---
_id: '25184'
author:
- first_name: Chuntian
  full_name: Cao, Chuntian
  last_name: Cao
- first_name: Travis P.
  full_name: Pollard, Travis P.
  last_name: Pollard
- first_name: Oleg
  full_name: Borodin, Oleg
  last_name: Borodin
- first_name: Julian E.
  full_name: Mars, Julian E.
  last_name: Mars
- first_name: Yuchi
  full_name: Tsao, Yuchi
  last_name: Tsao
- first_name: Maria R.
  full_name: Lukatskaya, Maria R.
  last_name: Lukatskaya
- first_name: Robert M.
  full_name: Kasse, Robert M.
  last_name: Kasse
- first_name: Marshall A.
  full_name: Schroeder, Marshall A.
  last_name: Schroeder
- first_name: Kang
  full_name: Xu, Kang
  last_name: Xu
- first_name: Michael F.
  full_name: Toney, Michael F.
  last_name: Toney
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
citation:
  ama: Cao C, Pollard TP, Borodin O, et al. Toward Unraveling the Origin of Lithium
    Fluoride in the Solid Electrolyte Interphase. <i>Chemistry of Materials</i>. 2021;33:7315-7336.
    doi:<a href="https://doi.org/10.1021/acs.chemmater.1c01744">10.1021/acs.chemmater.1c01744</a>
  apa: Cao, C., Pollard, T. P., Borodin, O., Mars, J. E., Tsao, Y., Lukatskaya, M.
    R., Kasse, R. M., Schroeder, M. A., Xu, K., Toney, M. F., &#38; Steinrück, H.-G.
    (2021). Toward Unraveling the Origin of Lithium Fluoride in the Solid Electrolyte
    Interphase. <i>Chemistry of Materials</i>, <i>33</i>, 7315–7336. <a href="https://doi.org/10.1021/acs.chemmater.1c01744">https://doi.org/10.1021/acs.chemmater.1c01744</a>
  bibtex: '@article{Cao_Pollard_Borodin_Mars_Tsao_Lukatskaya_Kasse_Schroeder_Xu_Toney_et
    al._2021, title={Toward Unraveling the Origin of Lithium Fluoride in the Solid
    Electrolyte Interphase}, volume={33}, DOI={<a href="https://doi.org/10.1021/acs.chemmater.1c01744">10.1021/acs.chemmater.1c01744</a>},
    journal={Chemistry of Materials}, author={Cao, Chuntian and Pollard, Travis P.
    and Borodin, Oleg and Mars, Julian E. and Tsao, Yuchi and Lukatskaya, Maria R.
    and Kasse, Robert M. and Schroeder, Marshall A. and Xu, Kang and Toney, Michael
    F. and et al.}, year={2021}, pages={7315–7336} }'
  chicago: 'Cao, Chuntian, Travis P. Pollard, Oleg Borodin, Julian E. Mars, Yuchi
    Tsao, Maria R. Lukatskaya, Robert M. Kasse, et al. “Toward Unraveling the Origin
    of Lithium Fluoride in the Solid Electrolyte Interphase.” <i>Chemistry of Materials</i>
    33 (2021): 7315–36. <a href="https://doi.org/10.1021/acs.chemmater.1c01744">https://doi.org/10.1021/acs.chemmater.1c01744</a>.'
  ieee: 'C. Cao <i>et al.</i>, “Toward Unraveling the Origin of Lithium Fluoride in
    the Solid Electrolyte Interphase,” <i>Chemistry of Materials</i>, vol. 33, pp.
    7315–7336, 2021, doi: <a href="https://doi.org/10.1021/acs.chemmater.1c01744">10.1021/acs.chemmater.1c01744</a>.'
  mla: Cao, Chuntian, et al. “Toward Unraveling the Origin of Lithium Fluoride in
    the Solid Electrolyte Interphase.” <i>Chemistry of Materials</i>, vol. 33, 2021,
    pp. 7315–36, doi:<a href="https://doi.org/10.1021/acs.chemmater.1c01744">10.1021/acs.chemmater.1c01744</a>.
  short: C. Cao, T.P. Pollard, O. Borodin, J.E. Mars, Y. Tsao, M.R. Lukatskaya, R.M.
    Kasse, M.A. Schroeder, K. Xu, M.F. Toney, H.-G. Steinrück, Chemistry of Materials
    33 (2021) 7315–7336.
date_created: 2021-09-30T14:32:44Z
date_updated: 2022-01-06T06:56:54Z
department:
- _id: '633'
doi: 10.1021/acs.chemmater.1c01744
intvolume: '        33'
language:
- iso: eng
page: 7315-7336
publication: Chemistry of Materials
publication_identifier:
  issn:
  - 0897-4756
  - 1520-5002
publication_status: published
status: public
title: Toward Unraveling the Origin of Lithium Fluoride in the Solid Electrolyte Interphase
type: journal_article
user_id: '84268'
volume: 33
year: '2021'
...
---
_id: '25272'
author:
- first_name: Katja
  full_name: Engelkemeier, Katja
  last_name: Engelkemeier
- first_name: Aijia
  full_name: Sun, Aijia
  last_name: Sun
- first_name: Dietrich
  full_name: Voswinkel, Dietrich
  last_name: Voswinkel
- first_name: Olexandr
  full_name: Grydin, Olexandr
  last_name: Grydin
- first_name: Mirko
  full_name: Schaper, Mirko
  last_name: Schaper
- first_name: Wolfgang
  full_name: Bremser, Wolfgang
  id: '32'
  last_name: Bremser
citation:
  ama: 'Engelkemeier K, Sun A, Voswinkel D, Grydin O, Schaper M, Bremser W. Zinc Anodizing:
    Structural Diversity of Anodic Zinc Oxide Controlled by the Type of Electrolyte.
    <i>ChemElectroChem</i>. Published online 2021:2155-2168. doi:<a href="https://doi.org/10.1002/celc.202100216">10.1002/celc.202100216</a>'
  apa: 'Engelkemeier, K., Sun, A., Voswinkel, D., Grydin, O., Schaper, M., &#38; Bremser,
    W. (2021). Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled
    by the Type of Electrolyte. <i>ChemElectroChem</i>, 2155–2168. <a href="https://doi.org/10.1002/celc.202100216">https://doi.org/10.1002/celc.202100216</a>'
  bibtex: '@article{Engelkemeier_Sun_Voswinkel_Grydin_Schaper_Bremser_2021, title={Zinc
    Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the Type of
    Electrolyte}, DOI={<a href="https://doi.org/10.1002/celc.202100216">10.1002/celc.202100216</a>},
    journal={ChemElectroChem}, author={Engelkemeier, Katja and Sun, Aijia and Voswinkel,
    Dietrich and Grydin, Olexandr and Schaper, Mirko and Bremser, Wolfgang}, year={2021},
    pages={2155–2168} }'
  chicago: 'Engelkemeier, Katja, Aijia Sun, Dietrich Voswinkel, Olexandr Grydin, Mirko
    Schaper, and Wolfgang Bremser. “Zinc Anodizing: Structural Diversity of Anodic
    Zinc Oxide Controlled by the Type of Electrolyte.” <i>ChemElectroChem</i>, 2021,
    2155–68. <a href="https://doi.org/10.1002/celc.202100216">https://doi.org/10.1002/celc.202100216</a>.'
  ieee: 'K. Engelkemeier, A. Sun, D. Voswinkel, O. Grydin, M. Schaper, and W. Bremser,
    “Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the Type
    of Electrolyte,” <i>ChemElectroChem</i>, pp. 2155–2168, 2021, doi: <a href="https://doi.org/10.1002/celc.202100216">10.1002/celc.202100216</a>.'
  mla: 'Engelkemeier, Katja, et al. “Zinc Anodizing: Structural Diversity of Anodic
    Zinc Oxide Controlled by the Type of Electrolyte.” <i>ChemElectroChem</i>, 2021,
    pp. 2155–68, doi:<a href="https://doi.org/10.1002/celc.202100216">10.1002/celc.202100216</a>.'
  short: K. Engelkemeier, A. Sun, D. Voswinkel, O. Grydin, M. Schaper, W. Bremser,
    ChemElectroChem (2021) 2155–2168.
date_created: 2021-10-04T08:35:07Z
date_updated: 2022-01-06T06:56:58Z
department:
- _id: '321'
- _id: '301'
doi: 10.1002/celc.202100216
language:
- iso: eng
page: 2155-2168
publication: ChemElectroChem
publication_identifier:
  issn:
  - 2196-0216
  - 2196-0216
publication_status: published
status: public
title: 'Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the
  Type of Electrolyte'
type: journal_article
user_id: '32'
year: '2021'
...
---
_id: '28198'
author:
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
citation:
  ama: Steinrück H-G. General relationship between salt concentration and x-ray absorption
    for binary electrolytes. <i>AIP Advances</i>. 2021;11(11):115119. doi:<a href="https://doi.org/10.1063/5.0072947">10.1063/5.0072947</a>
  apa: Steinrück, H.-G. (2021). General relationship between salt concentration and
    x-ray absorption for binary electrolytes. <i>AIP Advances</i>, <i>11</i>(11),
    115119. <a href="https://doi.org/10.1063/5.0072947">https://doi.org/10.1063/5.0072947</a>
  bibtex: '@article{Steinrück_2021, title={General relationship between salt concentration
    and x-ray absorption for binary electrolytes}, volume={11}, DOI={<a href="https://doi.org/10.1063/5.0072947">10.1063/5.0072947</a>},
    number={11}, journal={AIP Advances}, author={Steinrück, Hans-Georg}, year={2021},
    pages={115119} }'
  chicago: 'Steinrück, Hans-Georg. “General Relationship between Salt Concentration
    and X-Ray Absorption for Binary Electrolytes.” <i>AIP Advances</i> 11, no. 11
    (2021): 115119. <a href="https://doi.org/10.1063/5.0072947">https://doi.org/10.1063/5.0072947</a>.'
  ieee: 'H.-G. Steinrück, “General relationship between salt concentration and x-ray
    absorption for binary electrolytes,” <i>AIP Advances</i>, vol. 11, no. 11, p.
    115119, 2021, doi: <a href="https://doi.org/10.1063/5.0072947">10.1063/5.0072947</a>.'
  mla: Steinrück, Hans-Georg. “General Relationship between Salt Concentration and
    X-Ray Absorption for Binary Electrolytes.” <i>AIP Advances</i>, vol. 11, no. 11,
    2021, p. 115119, doi:<a href="https://doi.org/10.1063/5.0072947">10.1063/5.0072947</a>.
  short: H.-G. Steinrück, AIP Advances 11 (2021) 115119.
date_created: 2021-12-01T07:44:41Z
date_updated: 2022-01-06T06:57:53Z
department:
- _id: '633'
doi: 10.1063/5.0072947
intvolume: '        11'
issue: '11'
language:
- iso: eng
page: '115119'
publication: AIP Advances
publication_identifier:
  issn:
  - 2158-3226
publication_status: published
status: public
title: General relationship between salt concentration and x-ray absorption for binary
  electrolytes
type: journal_article
user_id: '84268'
volume: 11
year: '2021'
...
---
_id: '26011'
author:
- first_name: Dominik
  full_name: Hense, Dominik
  last_name: Hense
- first_name: Anne
  full_name: Büngeler, Anne
  last_name: Büngeler
- first_name: Fabian
  full_name: Kollmann, Fabian
  last_name: Kollmann
- first_name: Marcel
  full_name: Hanke, Marcel
  last_name: Hanke
- first_name: Alejandro
  full_name: Orive, Alejandro
  last_name: Orive
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
- first_name: Guido
  full_name: Grundmeier, Guido
  id: '194'
  last_name: Grundmeier
- first_name: Klaus
  full_name: Huber, Klaus
  last_name: Huber
- first_name: Oliver I.
  full_name: Strube, Oliver I.
  last_name: Strube
citation:
  ama: Hense D, Büngeler A, Kollmann F, et al. Self-Assembled Fibrinogen Hydro- and
    Aerogels with Fibrin-like 3D Structures. <i>Biomacromolecules</i>. 2021;22:4084–4094.
    doi:<a href="https://doi.org/10.1021/acs.biomac.1c00489">10.1021/acs.biomac.1c00489</a>
  apa: Hense, D., Büngeler, A., Kollmann, F., Hanke, M., Orive, A., Keller, A., Grundmeier,
    G., Huber, K., &#38; Strube, O. I. (2021). Self-Assembled Fibrinogen Hydro- and
    Aerogels with Fibrin-like 3D Structures. <i>Biomacromolecules</i>, <i>22</i>,
    4084–4094. <a href="https://doi.org/10.1021/acs.biomac.1c00489">https://doi.org/10.1021/acs.biomac.1c00489</a>
  bibtex: '@article{Hense_Büngeler_Kollmann_Hanke_Orive_Keller_Grundmeier_Huber_Strube_2021,
    title={Self-Assembled Fibrinogen Hydro- and Aerogels with Fibrin-like 3D Structures},
    volume={22}, DOI={<a href="https://doi.org/10.1021/acs.biomac.1c00489">10.1021/acs.biomac.1c00489</a>},
    journal={Biomacromolecules}, author={Hense, Dominik and Büngeler, Anne and Kollmann,
    Fabian and Hanke, Marcel and Orive, Alejandro and Keller, Adrian and Grundmeier,
    Guido and Huber, Klaus and Strube, Oliver I.}, year={2021}, pages={4084–4094}
    }'
  chicago: 'Hense, Dominik, Anne Büngeler, Fabian Kollmann, Marcel Hanke, Alejandro
    Orive, Adrian Keller, Guido Grundmeier, Klaus Huber, and Oliver I. Strube. “Self-Assembled
    Fibrinogen Hydro- and Aerogels with Fibrin-like 3D Structures.” <i>Biomacromolecules</i>
    22 (2021): 4084–4094. <a href="https://doi.org/10.1021/acs.biomac.1c00489">https://doi.org/10.1021/acs.biomac.1c00489</a>.'
  ieee: 'D. Hense <i>et al.</i>, “Self-Assembled Fibrinogen Hydro- and Aerogels with
    Fibrin-like 3D Structures,” <i>Biomacromolecules</i>, vol. 22, pp. 4084–4094,
    2021, doi: <a href="https://doi.org/10.1021/acs.biomac.1c00489">10.1021/acs.biomac.1c00489</a>.'
  mla: Hense, Dominik, et al. “Self-Assembled Fibrinogen Hydro- and Aerogels with
    Fibrin-like 3D Structures.” <i>Biomacromolecules</i>, vol. 22, 2021, pp. 4084–4094,
    doi:<a href="https://doi.org/10.1021/acs.biomac.1c00489">10.1021/acs.biomac.1c00489</a>.
  short: D. Hense, A. Büngeler, F. Kollmann, M. Hanke, A. Orive, A. Keller, G. Grundmeier,
    K. Huber, O.I. Strube, Biomacromolecules 22 (2021) 4084–4094.
date_created: 2021-10-11T07:31:04Z
date_updated: 2022-01-06T06:57:15Z
department:
- _id: '302'
- _id: '314'
- _id: '387'
doi: 10.1021/acs.biomac.1c00489
intvolume: '        22'
language:
- iso: eng
page: 4084–4094
publication: Biomacromolecules
publication_identifier:
  issn:
  - 1525-7797
  - 1526-4602
publication_status: published
status: public
title: Self-Assembled Fibrinogen Hydro- and Aerogels with Fibrin-like 3D Structures
type: journal_article
user_id: '48864'
volume: 22
year: '2021'
...
---
_id: '26759'
abstract:
- lang: eng
  text: <jats:p>Coatings of modified TiO2 nanoparticles (TiO2-m) have been shown to
    effectively and selectively trap non-adherent cancer cells, with an enormous potential
    for applications in photodynamic therapy (PDT). Leukemia cells have a remarkable
    affinity for TiO2-m coatings, adhering to the surface by membrane structures and
    exhibiting morphologic characteristics of amoeboid locomotion. However, the details
    of the cell–substrate interaction induced by the TiO2-m coating remain elusive.
    With the aim to obtain a better understanding of this phenomenon, leukemia cell
    adhesion to such coatings was characterized by atomic force microscopy (AFM) for
    short contact times up to 60 min. The cell and membrane morphological parameters
    mean cell height, contact area, cell volume, and membrane roughness were determined
    at different contact times. These results reveal cell expansion and contraction
    phases occurring during the initial stage of adhesion. Subsequently, the leukemic
    cells reach what appears to be a new resting state, characterized by pinning of
    the cell membrane by TiO2-m nanoparticle aggregates protruding from the coating
    surface.</jats:p>
author:
- first_name: Jaime Andres
  full_name: Garcia Diosa, Jaime Andres
  last_name: Garcia Diosa
- first_name: Alejandro
  full_name: Gonzalez Orive, Alejandro
  last_name: Gonzalez Orive
- first_name: Guido
  full_name: Grundmeier, Guido
  id: '194'
  last_name: Grundmeier
- first_name: Ruben Jesus
  full_name: Camargo Amado, Ruben Jesus
  last_name: Camargo Amado
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
citation:
  ama: Garcia Diosa JA, Gonzalez Orive A, Grundmeier G, Camargo Amado RJ, Keller A.
    Morphological Dynamics of Leukemia Cells on TiO2 Nanoparticle Coatings Studied
    by AFM. <i>Applied Sciences</i>. 2021;11:9898. doi:<a href="https://doi.org/10.3390/app11219898">10.3390/app11219898</a>
  apa: Garcia Diosa, J. A., Gonzalez Orive, A., Grundmeier, G., Camargo Amado, R.
    J., &#38; Keller, A. (2021). Morphological Dynamics of Leukemia Cells on TiO2
    Nanoparticle Coatings Studied by AFM. <i>Applied Sciences</i>, <i>11</i>, 9898.
    <a href="https://doi.org/10.3390/app11219898">https://doi.org/10.3390/app11219898</a>
  bibtex: '@article{Garcia Diosa_Gonzalez Orive_Grundmeier_Camargo Amado_Keller_2021,
    title={Morphological Dynamics of Leukemia Cells on TiO2 Nanoparticle Coatings
    Studied by AFM}, volume={11}, DOI={<a href="https://doi.org/10.3390/app11219898">10.3390/app11219898</a>},
    journal={Applied Sciences}, author={Garcia Diosa, Jaime Andres and Gonzalez Orive,
    Alejandro and Grundmeier, Guido and Camargo Amado, Ruben Jesus and Keller, Adrian},
    year={2021}, pages={9898} }'
  chicago: 'Garcia Diosa, Jaime Andres, Alejandro Gonzalez Orive, Guido Grundmeier,
    Ruben Jesus Camargo Amado, and Adrian Keller. “Morphological Dynamics of Leukemia
    Cells on TiO2 Nanoparticle Coatings Studied by AFM.” <i>Applied Sciences</i> 11
    (2021): 9898. <a href="https://doi.org/10.3390/app11219898">https://doi.org/10.3390/app11219898</a>.'
  ieee: 'J. A. Garcia Diosa, A. Gonzalez Orive, G. Grundmeier, R. J. Camargo Amado,
    and A. Keller, “Morphological Dynamics of Leukemia Cells on TiO2 Nanoparticle
    Coatings Studied by AFM,” <i>Applied Sciences</i>, vol. 11, p. 9898, 2021, doi:
    <a href="https://doi.org/10.3390/app11219898">10.3390/app11219898</a>.'
  mla: Garcia Diosa, Jaime Andres, et al. “Morphological Dynamics of Leukemia Cells
    on TiO2 Nanoparticle Coatings Studied by AFM.” <i>Applied Sciences</i>, vol. 11,
    2021, p. 9898, doi:<a href="https://doi.org/10.3390/app11219898">10.3390/app11219898</a>.
  short: J.A. Garcia Diosa, A. Gonzalez Orive, G. Grundmeier, R.J. Camargo Amado,
    A. Keller, Applied Sciences 11 (2021) 9898.
date_created: 2021-10-25T07:48:17Z
date_updated: 2022-01-06T06:57:27Z
department:
- _id: '302'
doi: 10.3390/app11219898
intvolume: '        11'
language:
- iso: eng
page: '9898'
publication: Applied Sciences
publication_identifier:
  issn:
  - 2076-3417
publication_status: published
status: public
title: Morphological Dynamics of Leukemia Cells on TiO2 Nanoparticle Coatings Studied
  by AFM
type: journal_article
user_id: '48864'
volume: 11
year: '2021'
...
---
_id: '26985'
author:
- first_name: Jaime Andrés
  full_name: Garcia-Diosa, Jaime Andrés
  last_name: Garcia-Diosa
- first_name: Alejandro Gonzalez
  full_name: Orive, Alejandro Gonzalez
  last_name: Orive
- first_name: Guido
  full_name: Grundmeier, Guido
  id: '194'
  last_name: Grundmeier
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
- first_name: Rubén Jesús
  full_name: Camargo-Amado, Rubén Jesús
  last_name: Camargo-Amado
citation:
  ama: Garcia-Diosa JA, Orive AG, Grundmeier G, Keller A, Camargo-Amado RJ. Influence
    of thickness, homogeneity, and morphology of TiO2-m nanoparticle coatings on cancer
    cell adhesion. <i>Surface and Coatings Technology</i>. Published online 2021:127823.
    doi:<a href="https://doi.org/10.1016/j.surfcoat.2021.127823">10.1016/j.surfcoat.2021.127823</a>
  apa: Garcia-Diosa, J. A., Orive, A. G., Grundmeier, G., Keller, A., &#38; Camargo-Amado,
    R. J. (2021). Influence of thickness, homogeneity, and morphology of TiO2-m nanoparticle
    coatings on cancer cell adhesion. <i>Surface and Coatings Technology</i>, 127823.
    <a href="https://doi.org/10.1016/j.surfcoat.2021.127823">https://doi.org/10.1016/j.surfcoat.2021.127823</a>
  bibtex: '@article{Garcia-Diosa_Orive_Grundmeier_Keller_Camargo-Amado_2021, title={Influence
    of thickness, homogeneity, and morphology of TiO2-m nanoparticle coatings on cancer
    cell adhesion}, DOI={<a href="https://doi.org/10.1016/j.surfcoat.2021.127823">10.1016/j.surfcoat.2021.127823</a>},
    journal={Surface and Coatings Technology}, author={Garcia-Diosa, Jaime Andrés
    and Orive, Alejandro Gonzalez and Grundmeier, Guido and Keller, Adrian and Camargo-Amado,
    Rubén Jesús}, year={2021}, pages={127823} }'
  chicago: Garcia-Diosa, Jaime Andrés, Alejandro Gonzalez Orive, Guido Grundmeier,
    Adrian Keller, and Rubén Jesús Camargo-Amado. “Influence of Thickness, Homogeneity,
    and Morphology of TiO2-m Nanoparticle Coatings on Cancer Cell Adhesion.” <i>Surface
    and Coatings Technology</i>, 2021, 127823. <a href="https://doi.org/10.1016/j.surfcoat.2021.127823">https://doi.org/10.1016/j.surfcoat.2021.127823</a>.
  ieee: 'J. A. Garcia-Diosa, A. G. Orive, G. Grundmeier, A. Keller, and R. J. Camargo-Amado,
    “Influence of thickness, homogeneity, and morphology of TiO2-m nanoparticle coatings
    on cancer cell adhesion,” <i>Surface and Coatings Technology</i>, p. 127823, 2021,
    doi: <a href="https://doi.org/10.1016/j.surfcoat.2021.127823">10.1016/j.surfcoat.2021.127823</a>.'
  mla: Garcia-Diosa, Jaime Andrés, et al. “Influence of Thickness, Homogeneity, and
    Morphology of TiO2-m Nanoparticle Coatings on Cancer Cell Adhesion.” <i>Surface
    and Coatings Technology</i>, 2021, p. 127823, doi:<a href="https://doi.org/10.1016/j.surfcoat.2021.127823">10.1016/j.surfcoat.2021.127823</a>.
  short: J.A. Garcia-Diosa, A.G. Orive, G. Grundmeier, A. Keller, R.J. Camargo-Amado,
    Surface and Coatings Technology (2021) 127823.
date_created: 2021-10-27T13:00:23Z
date_updated: 2022-01-06T06:57:31Z
department:
- _id: '302'
doi: 10.1016/j.surfcoat.2021.127823
language:
- iso: eng
page: '127823'
publication: Surface and Coatings Technology
publication_identifier:
  issn:
  - 0257-8972
publication_status: published
status: public
title: Influence of thickness, homogeneity, and morphology of TiO2-m nanoparticle
  coatings on cancer cell adhesion
type: journal_article
user_id: '48864'
year: '2021'
...
---
_id: '27016'
author:
- first_name: Partha P.
  full_name: Paul, Partha P.
  last_name: Paul
- first_name: Chuntian
  full_name: Cao, Chuntian
  last_name: Cao
- first_name: Vivek
  full_name: Thampy, Vivek
  last_name: Thampy
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
- first_name: Tanvir R.
  full_name: Tanim, Tanvir R.
  last_name: Tanim
- first_name: Alison R.
  full_name: Dunlop, Alison R.
  last_name: Dunlop
- first_name: Stephen E.
  full_name: Trask, Stephen E.
  last_name: Trask
- first_name: Andrew N.
  full_name: Jansen, Andrew N.
  last_name: Jansen
- first_name: Eric J.
  full_name: Dufek, Eric J.
  last_name: Dufek
- first_name: Johanna
  full_name: Nelson Weker, Johanna
  last_name: Nelson Weker
- first_name: Michael F.
  full_name: Toney, Michael F.
  last_name: Toney
citation:
  ama: Paul PP, Cao C, Thampy V, et al. Using In Situ High-Energy X-ray Diffraction
    to Quantify Electrode Behavior of Li-Ion Batteries from Extreme Fast Charging.
    <i>ACS Applied Energy Materials</i>. 2021;4:11590-11598. doi:<a href="https://doi.org/10.1021/acsaem.1c02348">10.1021/acsaem.1c02348</a>
  apa: Paul, P. P., Cao, C., Thampy, V., Steinrück, H.-G., Tanim, T. R., Dunlop, A.
    R., Trask, S. E., Jansen, A. N., Dufek, E. J., Nelson Weker, J., &#38; Toney,
    M. F. (2021). Using In Situ High-Energy X-ray Diffraction to Quantify Electrode
    Behavior of Li-Ion Batteries from Extreme Fast Charging. <i>ACS Applied Energy
    Materials</i>, <i>4</i>, 11590–11598. <a href="https://doi.org/10.1021/acsaem.1c02348">https://doi.org/10.1021/acsaem.1c02348</a>
  bibtex: '@article{Paul_Cao_Thampy_Steinrück_Tanim_Dunlop_Trask_Jansen_Dufek_Nelson
    Weker_et al._2021, title={Using In Situ High-Energy X-ray Diffraction to Quantify
    Electrode Behavior of Li-Ion Batteries from Extreme Fast Charging}, volume={4},
    DOI={<a href="https://doi.org/10.1021/acsaem.1c02348">10.1021/acsaem.1c02348</a>},
    journal={ACS Applied Energy Materials}, author={Paul, Partha P. and Cao, Chuntian
    and Thampy, Vivek and Steinrück, Hans-Georg and Tanim, Tanvir R. and Dunlop, Alison
    R. and Trask, Stephen E. and Jansen, Andrew N. and Dufek, Eric J. and Nelson Weker,
    Johanna and et al.}, year={2021}, pages={11590–11598} }'
  chicago: 'Paul, Partha P., Chuntian Cao, Vivek Thampy, Hans-Georg Steinrück, Tanvir
    R. Tanim, Alison R. Dunlop, Stephen E. Trask, et al. “Using In Situ High-Energy
    X-Ray Diffraction to Quantify Electrode Behavior of Li-Ion Batteries from Extreme
    Fast Charging.” <i>ACS Applied Energy Materials</i> 4 (2021): 11590–98. <a href="https://doi.org/10.1021/acsaem.1c02348">https://doi.org/10.1021/acsaem.1c02348</a>.'
  ieee: 'P. P. Paul <i>et al.</i>, “Using In Situ High-Energy X-ray Diffraction to
    Quantify Electrode Behavior of Li-Ion Batteries from Extreme Fast Charging,” <i>ACS
    Applied Energy Materials</i>, vol. 4, pp. 11590–11598, 2021, doi: <a href="https://doi.org/10.1021/acsaem.1c02348">10.1021/acsaem.1c02348</a>.'
  mla: Paul, Partha P., et al. “Using In Situ High-Energy X-Ray Diffraction to Quantify
    Electrode Behavior of Li-Ion Batteries from Extreme Fast Charging.” <i>ACS Applied
    Energy Materials</i>, vol. 4, 2021, pp. 11590–98, doi:<a href="https://doi.org/10.1021/acsaem.1c02348">10.1021/acsaem.1c02348</a>.
  short: P.P. Paul, C. Cao, V. Thampy, H.-G. Steinrück, T.R. Tanim, A.R. Dunlop, S.E.
    Trask, A.N. Jansen, E.J. Dufek, J. Nelson Weker, M.F. Toney, ACS Applied Energy
    Materials 4 (2021) 11590–11598.
date_created: 2021-10-30T17:05:27Z
date_updated: 2022-01-06T06:57:32Z
department:
- _id: '633'
doi: 10.1021/acsaem.1c02348
intvolume: '         4'
language:
- iso: eng
page: 11590-11598
publication: ACS Applied Energy Materials
publication_identifier:
  issn:
  - 2574-0962
  - 2574-0962
publication_status: published
status: public
title: Using In Situ High-Energy X-ray Diffraction to Quantify Electrode Behavior
  of Li-Ion Batteries from Extreme Fast Charging
type: journal_article
user_id: '84268'
volume: 4
year: '2021'
...
---
_id: '27017'
author:
- first_name: Camila
  full_name: Cendra, Camila
  last_name: Cendra
- first_name: Luke
  full_name: Balhorn, Luke
  last_name: Balhorn
- first_name: Weimin
  full_name: Zhang, Weimin
  last_name: Zhang
- first_name: Kathryn
  full_name: O’Hara, Kathryn
  last_name: O’Hara
- first_name: Karsten
  full_name: Bruening, Karsten
  last_name: Bruening
- first_name: Christopher J.
  full_name: Tassone, Christopher J.
  last_name: Tassone
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
- first_name: Mengning
  full_name: Liang, Mengning
  last_name: Liang
- first_name: Michael F.
  full_name: Toney, Michael F.
  last_name: Toney
- first_name: Iain
  full_name: McCulloch, Iain
  last_name: McCulloch
- first_name: Michael L.
  full_name: Chabinyc, Michael L.
  last_name: Chabinyc
- first_name: Alberto
  full_name: Salleo, Alberto
  last_name: Salleo
- first_name: Christopher J.
  full_name: Takacs, Christopher J.
  last_name: Takacs
citation:
  ama: Cendra C, Balhorn L, Zhang W, et al. Unraveling the Unconventional Order of
    a High-Mobility Indacenodithiophene–Benzothiadiazole Copolymer. <i>ACS Macro Letters</i>.
    2021;10:1306-1314. doi:<a href="https://doi.org/10.1021/acsmacrolett.1c00547">10.1021/acsmacrolett.1c00547</a>
  apa: Cendra, C., Balhorn, L., Zhang, W., O’Hara, K., Bruening, K., Tassone, C. J.,
    Steinrück, H.-G., Liang, M., Toney, M. F., McCulloch, I., Chabinyc, M. L., Salleo,
    A., &#38; Takacs, C. J. (2021). Unraveling the Unconventional Order of a High-Mobility
    Indacenodithiophene–Benzothiadiazole Copolymer. <i>ACS Macro Letters</i>, <i>10</i>,
    1306–1314. <a href="https://doi.org/10.1021/acsmacrolett.1c00547">https://doi.org/10.1021/acsmacrolett.1c00547</a>
  bibtex: '@article{Cendra_Balhorn_Zhang_O’Hara_Bruening_Tassone_Steinrück_Liang_Toney_McCulloch_et
    al._2021, title={Unraveling the Unconventional Order of a High-Mobility Indacenodithiophene–Benzothiadiazole
    Copolymer}, volume={10}, DOI={<a href="https://doi.org/10.1021/acsmacrolett.1c00547">10.1021/acsmacrolett.1c00547</a>},
    journal={ACS Macro Letters}, author={Cendra, Camila and Balhorn, Luke and Zhang,
    Weimin and O’Hara, Kathryn and Bruening, Karsten and Tassone, Christopher J. and
    Steinrück, Hans-Georg and Liang, Mengning and Toney, Michael F. and McCulloch,
    Iain and et al.}, year={2021}, pages={1306–1314} }'
  chicago: 'Cendra, Camila, Luke Balhorn, Weimin Zhang, Kathryn O’Hara, Karsten Bruening,
    Christopher J. Tassone, Hans-Georg Steinrück, et al. “Unraveling the Unconventional
    Order of a High-Mobility Indacenodithiophene–Benzothiadiazole Copolymer.” <i>ACS
    Macro Letters</i> 10 (2021): 1306–14. <a href="https://doi.org/10.1021/acsmacrolett.1c00547">https://doi.org/10.1021/acsmacrolett.1c00547</a>.'
  ieee: 'C. Cendra <i>et al.</i>, “Unraveling the Unconventional Order of a High-Mobility
    Indacenodithiophene–Benzothiadiazole Copolymer,” <i>ACS Macro Letters</i>, vol.
    10, pp. 1306–1314, 2021, doi: <a href="https://doi.org/10.1021/acsmacrolett.1c00547">10.1021/acsmacrolett.1c00547</a>.'
  mla: Cendra, Camila, et al. “Unraveling the Unconventional Order of a High-Mobility
    Indacenodithiophene–Benzothiadiazole Copolymer.” <i>ACS Macro Letters</i>, vol.
    10, 2021, pp. 1306–14, doi:<a href="https://doi.org/10.1021/acsmacrolett.1c00547">10.1021/acsmacrolett.1c00547</a>.
  short: C. Cendra, L. Balhorn, W. Zhang, K. O’Hara, K. Bruening, C.J. Tassone, H.-G.
    Steinrück, M. Liang, M.F. Toney, I. McCulloch, M.L. Chabinyc, A. Salleo, C.J.
    Takacs, ACS Macro Letters 10 (2021) 1306–1314.
date_created: 2021-10-30T17:07:04Z
date_updated: 2022-01-06T06:57:32Z
department:
- _id: '633'
doi: 10.1021/acsmacrolett.1c00547
intvolume: '        10'
language:
- iso: eng
page: 1306-1314
publication: ACS Macro Letters
publication_identifier:
  issn:
  - 2161-1653
  - 2161-1653
publication_status: published
status: public
title: Unraveling the Unconventional Order of a High-Mobility Indacenodithiophene–Benzothiadiazole
  Copolymer
type: journal_article
user_id: '84268'
volume: 10
year: '2021'
...
---
_id: '23609'
author:
- first_name: Burak
  full_name: Guzelturk, Burak
  last_name: Guzelturk
- first_name: Thomas
  full_name: Winkler, Thomas
  last_name: Winkler
- first_name: Tim W. J.
  full_name: Van de Goor, Tim W. J.
  last_name: Van de Goor
- first_name: Matthew D.
  full_name: Smith, Matthew D.
  last_name: Smith
- first_name: Sean A.
  full_name: Bourelle, Sean A.
  last_name: Bourelle
- first_name: Sascha
  full_name: Feldmann, Sascha
  last_name: Feldmann
- first_name: Mariano
  full_name: Trigo, Mariano
  last_name: Trigo
- first_name: Samuel W.
  full_name: Teitelbaum, Samuel W.
  last_name: Teitelbaum
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
- first_name: Gilberto A.
  full_name: de la Pena, Gilberto A.
  last_name: de la Pena
- first_name: Roberto
  full_name: Alonso-Mori, Roberto
  last_name: Alonso-Mori
- first_name: Diling
  full_name: Zhu, Diling
  last_name: Zhu
- first_name: Takahiro
  full_name: Sato, Takahiro
  last_name: Sato
- first_name: Hemamala I.
  full_name: Karunadasa, Hemamala I.
  last_name: Karunadasa
- first_name: Michael F.
  full_name: Toney, Michael F.
  last_name: Toney
- first_name: Felix
  full_name: Deschler, Felix
  last_name: Deschler
- first_name: Aaron M.
  full_name: Lindenberg, Aaron M.
  last_name: Lindenberg
citation:
  ama: Guzelturk B, Winkler T, Van de Goor TWJ, et al. Visualization of dynamic polaronic
    strain fields in hybrid lead halide perovskites. <i>Nature Materials</i>. 2021;20:618-623.
    doi:<a href="https://doi.org/10.1038/s41563-020-00865-5">10.1038/s41563-020-00865-5</a>
  apa: Guzelturk, B., Winkler, T., Van de Goor, T. W. J., Smith, M. D., Bourelle,
    S. A., Feldmann, S., Trigo, M., Teitelbaum, S. W., Steinrück, H.-G., de la Pena,
    G. A., Alonso-Mori, R., Zhu, D., Sato, T., Karunadasa, H. I., Toney, M. F., Deschler,
    F., &#38; Lindenberg, A. M. (2021). Visualization of dynamic polaronic strain
    fields in hybrid lead halide perovskites. <i>Nature Materials</i>, <i>20</i>,
    618–623. <a href="https://doi.org/10.1038/s41563-020-00865-5">https://doi.org/10.1038/s41563-020-00865-5</a>
  bibtex: '@article{Guzelturk_Winkler_Van de Goor_Smith_Bourelle_Feldmann_Trigo_Teitelbaum_Steinrück_de
    la Pena_et al._2021, title={Visualization of dynamic polaronic strain fields in
    hybrid lead halide perovskites}, volume={20}, DOI={<a href="https://doi.org/10.1038/s41563-020-00865-5">10.1038/s41563-020-00865-5</a>},
    journal={Nature Materials}, author={Guzelturk, Burak and Winkler, Thomas and Van
    de Goor, Tim W. J. and Smith, Matthew D. and Bourelle, Sean A. and Feldmann, Sascha
    and Trigo, Mariano and Teitelbaum, Samuel W. and Steinrück, Hans-Georg and de
    la Pena, Gilberto A. and et al.}, year={2021}, pages={618–623} }'
  chicago: 'Guzelturk, Burak, Thomas Winkler, Tim W. J. Van de Goor, Matthew D. Smith,
    Sean A. Bourelle, Sascha Feldmann, Mariano Trigo, et al. “Visualization of Dynamic
    Polaronic Strain Fields in Hybrid Lead Halide Perovskites.” <i>Nature Materials</i>
    20 (2021): 618–23. <a href="https://doi.org/10.1038/s41563-020-00865-5">https://doi.org/10.1038/s41563-020-00865-5</a>.'
  ieee: 'B. Guzelturk <i>et al.</i>, “Visualization of dynamic polaronic strain fields
    in hybrid lead halide perovskites,” <i>Nature Materials</i>, vol. 20, pp. 618–623,
    2021, doi: <a href="https://doi.org/10.1038/s41563-020-00865-5">10.1038/s41563-020-00865-5</a>.'
  mla: Guzelturk, Burak, et al. “Visualization of Dynamic Polaronic Strain Fields
    in Hybrid Lead Halide Perovskites.” <i>Nature Materials</i>, vol. 20, 2021, pp.
    618–23, doi:<a href="https://doi.org/10.1038/s41563-020-00865-5">10.1038/s41563-020-00865-5</a>.
  short: B. Guzelturk, T. Winkler, T.W.J. Van de Goor, M.D. Smith, S.A. Bourelle,
    S. Feldmann, M. Trigo, S.W. Teitelbaum, H.-G. Steinrück, G.A. de la Pena, R. Alonso-Mori,
    D. Zhu, T. Sato, H.I. Karunadasa, M.F. Toney, F. Deschler, A.M. Lindenberg, Nature
    Materials 20 (2021) 618–623.
date_created: 2021-09-01T09:09:05Z
date_updated: 2022-01-06T06:55:57Z
department:
- _id: '633'
doi: 10.1038/s41563-020-00865-5
intvolume: '        20'
language:
- iso: eng
page: 618-623
publication: Nature Materials
publication_identifier:
  issn:
  - 1476-1122
  - 1476-4660
publication_status: published
status: public
title: Visualization of dynamic polaronic strain fields in hybrid lead halide perovskites
type: journal_article
user_id: '84268'
volume: 20
year: '2021'
...
---
_id: '23610'
author:
- first_name: Partha P.
  full_name: Paul, Partha P.
  last_name: Paul
- first_name: Eric J.
  full_name: McShane, Eric J.
  last_name: McShane
- first_name: Andrew M.
  full_name: Colclasure, Andrew M.
  last_name: Colclasure
- first_name: Nitash
  full_name: Balsara, Nitash
  last_name: Balsara
- first_name: David E.
  full_name: Brown, David E.
  last_name: Brown
- first_name: Chuntian
  full_name: Cao, Chuntian
  last_name: Cao
- first_name: Bor‐Rong
  full_name: Chen, Bor‐Rong
  last_name: Chen
- first_name: Parameswara R.
  full_name: Chinnam, Parameswara R.
  last_name: Chinnam
- first_name: Yi
  full_name: Cui, Yi
  last_name: Cui
- first_name: Eric J.
  full_name: Dufek, Eric J.
  last_name: Dufek
- first_name: Donal P.
  full_name: Finegan, Donal P.
  last_name: Finegan
- first_name: Samuel
  full_name: Gillard, Samuel
  last_name: Gillard
- first_name: Wenxiao
  full_name: Huang, Wenxiao
  last_name: Huang
- first_name: Zachary M.
  full_name: Konz, Zachary M.
  last_name: Konz
- first_name: Robert
  full_name: Kostecki, Robert
  last_name: Kostecki
- first_name: Fang
  full_name: Liu, Fang
  last_name: Liu
- first_name: Sean
  full_name: Lubner, Sean
  last_name: Lubner
- first_name: Ravi
  full_name: Prasher, Ravi
  last_name: Prasher
- first_name: Molleigh B.
  full_name: Preefer, Molleigh B.
  last_name: Preefer
- first_name: Ji
  full_name: Qian, Ji
  last_name: Qian
- first_name: Marco‐Tulio Fonseca
  full_name: Rodrigues, Marco‐Tulio Fonseca
  last_name: Rodrigues
- first_name: Manuel
  full_name: Schnabel, Manuel
  last_name: Schnabel
- first_name: Seoung‐Bum
  full_name: Son, Seoung‐Bum
  last_name: Son
- first_name: Venkat
  full_name: Srinivasan, Venkat
  last_name: Srinivasan
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
- first_name: Tanvir R.
  full_name: Tanim, Tanvir R.
  last_name: Tanim
- first_name: Michael F.
  full_name: Toney, Michael F.
  last_name: Toney
- first_name: Wei
  full_name: Tong, Wei
  last_name: Tong
- first_name: Francois
  full_name: Usseglio‐Viretta, Francois
  last_name: Usseglio‐Viretta
- first_name: Jiayu
  full_name: Wan, Jiayu
  last_name: Wan
- first_name: Maha
  full_name: Yusuf, Maha
  last_name: Yusuf
- first_name: Bryan D.
  full_name: McCloskey, Bryan D.
  last_name: McCloskey
- first_name: Johanna
  full_name: Nelson Weker, Johanna
  last_name: Nelson Weker
citation:
  ama: Paul PP, McShane EJ, Colclasure AM, et al. A Review of Existing and Emerging
    Methods for Lithium Detection and Characterization in Li‐Ion and Li‐Metal Batteries.
    <i>Advanced Energy Materials</i>. 2021;11:2100372. doi:<a href="https://doi.org/10.1002/aenm.202100372">10.1002/aenm.202100372</a>
  apa: Paul, P. P., McShane, E. J., Colclasure, A. M., Balsara, N., Brown, D. E.,
    Cao, C., Chen, B., Chinnam, P. R., Cui, Y., Dufek, E. J., Finegan, D. P., Gillard,
    S., Huang, W., Konz, Z. M., Kostecki, R., Liu, F., Lubner, S., Prasher, R., Preefer,
    M. B., … Nelson Weker, J. (2021). A Review of Existing and Emerging Methods for
    Lithium Detection and Characterization in Li‐Ion and Li‐Metal Batteries. <i>Advanced
    Energy Materials</i>, <i>11</i>, 2100372. <a href="https://doi.org/10.1002/aenm.202100372">https://doi.org/10.1002/aenm.202100372</a>
  bibtex: '@article{Paul_McShane_Colclasure_Balsara_Brown_Cao_Chen_Chinnam_Cui_Dufek_et
    al._2021, title={A Review of Existing and Emerging Methods for Lithium Detection
    and Characterization in Li‐Ion and Li‐Metal Batteries}, volume={11}, DOI={<a href="https://doi.org/10.1002/aenm.202100372">10.1002/aenm.202100372</a>},
    journal={Advanced Energy Materials}, author={Paul, Partha P. and McShane, Eric
    J. and Colclasure, Andrew M. and Balsara, Nitash and Brown, David E. and Cao,
    Chuntian and Chen, Bor‐Rong and Chinnam, Parameswara R. and Cui, Yi and Dufek,
    Eric J. and et al.}, year={2021}, pages={2100372} }'
  chicago: 'Paul, Partha P., Eric J. McShane, Andrew M. Colclasure, Nitash Balsara,
    David E. Brown, Chuntian Cao, Bor‐Rong Chen, et al. “A Review of Existing and
    Emerging Methods for Lithium Detection and Characterization in Li‐Ion and Li‐Metal
    Batteries.” <i>Advanced Energy Materials</i> 11 (2021): 2100372. <a href="https://doi.org/10.1002/aenm.202100372">https://doi.org/10.1002/aenm.202100372</a>.'
  ieee: 'P. P. Paul <i>et al.</i>, “A Review of Existing and Emerging Methods for
    Lithium Detection and Characterization in Li‐Ion and Li‐Metal Batteries,” <i>Advanced
    Energy Materials</i>, vol. 11, p. 2100372, 2021, doi: <a href="https://doi.org/10.1002/aenm.202100372">10.1002/aenm.202100372</a>.'
  mla: Paul, Partha P., et al. “A Review of Existing and Emerging Methods for Lithium
    Detection and Characterization in Li‐Ion and Li‐Metal Batteries.” <i>Advanced
    Energy Materials</i>, vol. 11, 2021, p. 2100372, doi:<a href="https://doi.org/10.1002/aenm.202100372">10.1002/aenm.202100372</a>.
  short: P.P. Paul, E.J. McShane, A.M. Colclasure, N. Balsara, D.E. Brown, C. Cao,
    B. Chen, P.R. Chinnam, Y. Cui, E.J. Dufek, D.P. Finegan, S. Gillard, W. Huang,
    Z.M. Konz, R. Kostecki, F. Liu, S. Lubner, R. Prasher, M.B. Preefer, J. Qian,
    M.F. Rodrigues, M. Schnabel, S. Son, V. Srinivasan, H.-G. Steinrück, T.R. Tanim,
    M.F. Toney, W. Tong, F. Usseglio‐Viretta, J. Wan, M. Yusuf, B.D. McCloskey, J.
    Nelson Weker, Advanced Energy Materials 11 (2021) 2100372.
date_created: 2021-09-01T09:09:11Z
date_updated: 2022-01-06T06:55:57Z
department:
- _id: '633'
doi: 10.1002/aenm.202100372
intvolume: '        11'
language:
- iso: eng
page: '2100372'
publication: Advanced Energy Materials
publication_identifier:
  issn:
  - 1614-6832
  - 1614-6840
publication_status: published
status: public
title: A Review of Existing and Emerging Methods for Lithium Detection and Characterization
  in Li‐Ion and Li‐Metal Batteries
type: journal_article
user_id: '84268'
volume: 11
year: '2021'
...
---
_id: '23611'
author:
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
citation:
  ama: 'Steinrück H-G. Modeling cyclic voltammetry during solid electrolyte interphase
    formation: Baseline scenario of a dynamically evolving tunneling barrier resulting
    from a homogeneous single-phase insulating film. <i>The Journal of Chemical Physics</i>.
    2021;154:174703. doi:<a href="https://doi.org/10.1063/5.0049591">10.1063/5.0049591</a>'
  apa: 'Steinrück, H.-G. (2021). Modeling cyclic voltammetry during solid electrolyte
    interphase formation: Baseline scenario of a dynamically evolving tunneling barrier
    resulting from a homogeneous single-phase insulating film. <i>The Journal of Chemical
    Physics</i>, <i>154</i>, 174703. <a href="https://doi.org/10.1063/5.0049591">https://doi.org/10.1063/5.0049591</a>'
  bibtex: '@article{Steinrück_2021, title={Modeling cyclic voltammetry during solid
    electrolyte interphase formation: Baseline scenario of a dynamically evolving
    tunneling barrier resulting from a homogeneous single-phase insulating film},
    volume={154}, DOI={<a href="https://doi.org/10.1063/5.0049591">10.1063/5.0049591</a>},
    journal={The Journal of Chemical Physics}, author={Steinrück, Hans-Georg}, year={2021},
    pages={174703} }'
  chicago: 'Steinrück, Hans-Georg. “Modeling Cyclic Voltammetry during Solid Electrolyte
    Interphase Formation: Baseline Scenario of a Dynamically Evolving Tunneling Barrier
    Resulting from a Homogeneous Single-Phase Insulating Film.” <i>The Journal of
    Chemical Physics</i> 154 (2021): 174703. <a href="https://doi.org/10.1063/5.0049591">https://doi.org/10.1063/5.0049591</a>.'
  ieee: 'H.-G. Steinrück, “Modeling cyclic voltammetry during solid electrolyte interphase
    formation: Baseline scenario of a dynamically evolving tunneling barrier resulting
    from a homogeneous single-phase insulating film,” <i>The Journal of Chemical Physics</i>,
    vol. 154, p. 174703, 2021, doi: <a href="https://doi.org/10.1063/5.0049591">10.1063/5.0049591</a>.'
  mla: 'Steinrück, Hans-Georg. “Modeling Cyclic Voltammetry during Solid Electrolyte
    Interphase Formation: Baseline Scenario of a Dynamically Evolving Tunneling Barrier
    Resulting from a Homogeneous Single-Phase Insulating Film.” <i>The Journal of
    Chemical Physics</i>, vol. 154, 2021, p. 174703, doi:<a href="https://doi.org/10.1063/5.0049591">10.1063/5.0049591</a>.'
  short: H.-G. Steinrück, The Journal of Chemical Physics 154 (2021) 174703.
date_created: 2021-09-01T09:09:16Z
date_updated: 2022-01-06T06:55:57Z
department:
- _id: '633'
doi: 10.1063/5.0049591
intvolume: '       154'
language:
- iso: eng
page: '174703'
publication: The Journal of Chemical Physics
publication_identifier:
  issn:
  - 0021-9606
  - 1089-7690
publication_status: published
status: public
title: 'Modeling cyclic voltammetry during solid electrolyte interphase formation:
  Baseline scenario of a dynamically evolving tunneling barrier resulting from a homogeneous
  single-phase insulating film'
type: journal_article
user_id: '84268'
volume: 154
year: '2021'
...
---
_id: '23612'
author:
- first_name: Yong
  full_name: Zhang, Yong
  last_name: Zhang
- first_name: Nicholas H. C.
  full_name: Lewis, Nicholas H. C.
  last_name: Lewis
- first_name: Julian
  full_name: Mars, Julian
  last_name: Mars
- first_name: Gang
  full_name: Wan, Gang
  last_name: Wan
- first_name: Nicholas J.
  full_name: Weadock, Nicholas J.
  last_name: Weadock
- first_name: Christopher J.
  full_name: Takacs, Christopher J.
  last_name: Takacs
- first_name: Maria R.
  full_name: Lukatskaya, Maria R.
  last_name: Lukatskaya
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
- first_name: Michael F.
  full_name: Toney, Michael F.
  last_name: Toney
- first_name: Andrei
  full_name: Tokmakoff, Andrei
  last_name: Tokmakoff
- first_name: Edward J.
  full_name: Maginn, Edward J.
  last_name: Maginn
citation:
  ama: Zhang Y, Lewis NHC, Mars J, et al. Water-in-Salt LiTFSI Aqueous Electrolytes.
    1. Liquid Structure from Combined Molecular Dynamics Simulation and Experimental
    Studies. <i>The Journal of Physical Chemistry B</i>. 2021;125:4501-4513. doi:<a
    href="https://doi.org/10.1021/acs.jpcb.1c02189">10.1021/acs.jpcb.1c02189</a>
  apa: Zhang, Y., Lewis, N. H. C., Mars, J., Wan, G., Weadock, N. J., Takacs, C. J.,
    Lukatskaya, M. R., Steinrück, H.-G., Toney, M. F., Tokmakoff, A., &#38; Maginn,
    E. J. (2021). Water-in-Salt LiTFSI Aqueous Electrolytes. 1. Liquid Structure from
    Combined Molecular Dynamics Simulation and Experimental Studies. <i>The Journal
    of Physical Chemistry B</i>, <i>125</i>, 4501–4513. <a href="https://doi.org/10.1021/acs.jpcb.1c02189">https://doi.org/10.1021/acs.jpcb.1c02189</a>
  bibtex: '@article{Zhang_Lewis_Mars_Wan_Weadock_Takacs_Lukatskaya_Steinrück_Toney_Tokmakoff_et
    al._2021, title={Water-in-Salt LiTFSI Aqueous Electrolytes. 1. Liquid Structure
    from Combined Molecular Dynamics Simulation and Experimental Studies}, volume={125},
    DOI={<a href="https://doi.org/10.1021/acs.jpcb.1c02189">10.1021/acs.jpcb.1c02189</a>},
    journal={The Journal of Physical Chemistry B}, author={Zhang, Yong and Lewis,
    Nicholas H. C. and Mars, Julian and Wan, Gang and Weadock, Nicholas J. and Takacs,
    Christopher J. and Lukatskaya, Maria R. and Steinrück, Hans-Georg and Toney, Michael
    F. and Tokmakoff, Andrei and et al.}, year={2021}, pages={4501–4513} }'
  chicago: 'Zhang, Yong, Nicholas H. C. Lewis, Julian Mars, Gang Wan, Nicholas J.
    Weadock, Christopher J. Takacs, Maria R. Lukatskaya, et al. “Water-in-Salt LiTFSI
    Aqueous Electrolytes. 1. Liquid Structure from Combined Molecular Dynamics Simulation
    and Experimental Studies.” <i>The Journal of Physical Chemistry B</i> 125 (2021):
    4501–13. <a href="https://doi.org/10.1021/acs.jpcb.1c02189">https://doi.org/10.1021/acs.jpcb.1c02189</a>.'
  ieee: 'Y. Zhang <i>et al.</i>, “Water-in-Salt LiTFSI Aqueous Electrolytes. 1. Liquid
    Structure from Combined Molecular Dynamics Simulation and Experimental Studies,”
    <i>The Journal of Physical Chemistry B</i>, vol. 125, pp. 4501–4513, 2021, doi:
    <a href="https://doi.org/10.1021/acs.jpcb.1c02189">10.1021/acs.jpcb.1c02189</a>.'
  mla: Zhang, Yong, et al. “Water-in-Salt LiTFSI Aqueous Electrolytes. 1. Liquid Structure
    from Combined Molecular Dynamics Simulation and Experimental Studies.” <i>The
    Journal of Physical Chemistry B</i>, vol. 125, 2021, pp. 4501–13, doi:<a href="https://doi.org/10.1021/acs.jpcb.1c02189">10.1021/acs.jpcb.1c02189</a>.
  short: Y. Zhang, N.H.C. Lewis, J. Mars, G. Wan, N.J. Weadock, C.J. Takacs, M.R.
    Lukatskaya, H.-G. Steinrück, M.F. Toney, A. Tokmakoff, E.J. Maginn, The Journal
    of Physical Chemistry B 125 (2021) 4501–4513.
date_created: 2021-09-01T09:09:26Z
date_updated: 2022-01-06T06:55:57Z
department:
- _id: '633'
doi: 10.1021/acs.jpcb.1c02189
intvolume: '       125'
language:
- iso: eng
page: 4501-4513
publication: The Journal of Physical Chemistry B
publication_identifier:
  issn:
  - 1520-6106
  - 1520-5207
publication_status: published
status: public
title: Water-in-Salt LiTFSI Aqueous Electrolytes. 1. Liquid Structure from Combined
  Molecular Dynamics Simulation and Experimental Studies
type: journal_article
user_id: '84268'
volume: 125
year: '2021'
...
---
_id: '23613'
author:
- first_name: Baolin
  full_name: Zhao, Baolin
  last_name: Zhao
- first_name: Bastian
  full_name: Gothe, Bastian
  last_name: Gothe
- first_name: Arthur
  full_name: Groh, Arthur
  last_name: Groh
- first_name: Thomas
  full_name: Schmaltz, Thomas
  last_name: Schmaltz
- first_name: Johannes
  full_name: Will, Johannes
  last_name: Will
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
- first_name: Tobias
  full_name: Unruh, Tobias
  last_name: Unruh
- first_name: Stefan
  full_name: Mecking, Stefan
  last_name: Mecking
- first_name: Marcus
  full_name: Halik, Marcus
  last_name: Halik
citation:
  ama: Zhao B, Gothe B, Groh A, et al. Oligothiophene Phosphonic Acids for Self-Assembled
    Monolayer Field-Effect Transistors. <i>ACS Applied Materials &#38; Interfaces</i>.
    2021;13:32461-32466. doi:<a href="https://doi.org/10.1021/acsami.1c05764">10.1021/acsami.1c05764</a>
  apa: Zhao, B., Gothe, B., Groh, A., Schmaltz, T., Will, J., Steinrück, H.-G., Unruh,
    T., Mecking, S., &#38; Halik, M. (2021). Oligothiophene Phosphonic Acids for Self-Assembled
    Monolayer Field-Effect Transistors. <i>ACS Applied Materials &#38; Interfaces</i>,
    <i>13</i>, 32461–32466. <a href="https://doi.org/10.1021/acsami.1c05764">https://doi.org/10.1021/acsami.1c05764</a>
  bibtex: '@article{Zhao_Gothe_Groh_Schmaltz_Will_Steinrück_Unruh_Mecking_Halik_2021,
    title={Oligothiophene Phosphonic Acids for Self-Assembled Monolayer Field-Effect
    Transistors}, volume={13}, DOI={<a href="https://doi.org/10.1021/acsami.1c05764">10.1021/acsami.1c05764</a>},
    journal={ACS Applied Materials &#38; Interfaces}, author={Zhao, Baolin and Gothe,
    Bastian and Groh, Arthur and Schmaltz, Thomas and Will, Johannes and Steinrück,
    Hans-Georg and Unruh, Tobias and Mecking, Stefan and Halik, Marcus}, year={2021},
    pages={32461–32466} }'
  chicago: 'Zhao, Baolin, Bastian Gothe, Arthur Groh, Thomas Schmaltz, Johannes Will,
    Hans-Georg Steinrück, Tobias Unruh, Stefan Mecking, and Marcus Halik. “Oligothiophene
    Phosphonic Acids for Self-Assembled Monolayer Field-Effect Transistors.” <i>ACS
    Applied Materials &#38; Interfaces</i> 13 (2021): 32461–66. <a href="https://doi.org/10.1021/acsami.1c05764">https://doi.org/10.1021/acsami.1c05764</a>.'
  ieee: 'B. Zhao <i>et al.</i>, “Oligothiophene Phosphonic Acids for Self-Assembled
    Monolayer Field-Effect Transistors,” <i>ACS Applied Materials &#38; Interfaces</i>,
    vol. 13, pp. 32461–32466, 2021, doi: <a href="https://doi.org/10.1021/acsami.1c05764">10.1021/acsami.1c05764</a>.'
  mla: Zhao, Baolin, et al. “Oligothiophene Phosphonic Acids for Self-Assembled Monolayer
    Field-Effect Transistors.” <i>ACS Applied Materials &#38; Interfaces</i>, vol.
    13, 2021, pp. 32461–66, doi:<a href="https://doi.org/10.1021/acsami.1c05764">10.1021/acsami.1c05764</a>.
  short: B. Zhao, B. Gothe, A. Groh, T. Schmaltz, J. Will, H.-G. Steinrück, T. Unruh,
    S. Mecking, M. Halik, ACS Applied Materials &#38; Interfaces 13 (2021) 32461–32466.
date_created: 2021-09-01T09:09:36Z
date_updated: 2022-01-06T06:55:57Z
department:
- _id: '633'
doi: 10.1021/acsami.1c05764
intvolume: '        13'
language:
- iso: eng
page: 32461-32466
publication: ACS Applied Materials & Interfaces
publication_identifier:
  issn:
  - 1944-8244
  - 1944-8252
publication_status: published
status: public
title: Oligothiophene Phosphonic Acids for Self-Assembled Monolayer Field-Effect Transistors
type: journal_article
user_id: '84268'
volume: 13
year: '2021'
...
---
_id: '23614'
abstract:
- lang: eng
  text: <jats:p>A liquid-crystalline hexaphenylene amphiphile and an aluminosilicate
    precursor were co-assembled and pyrolyzed to form carbon-aluminosilicate nanocomposites
    with controlled lamellar orientation and macroscopic order.</jats:p>
author:
- first_name: Dragana
  full_name: Paripović, Dragana
  last_name: Paripović
- first_name: Lucia
  full_name: Hartmann, Lucia
  last_name: Hartmann
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
- first_name: Andreas
  full_name: Magerl, Andreas
  last_name: Magerl
- first_name: Giovanni
  full_name: Li-Destri, Giovanni
  last_name: Li-Destri
- first_name: Yannik
  full_name: Fontana, Yannik
  last_name: Fontana
- first_name: Anna
  full_name: Fontcuberta i Morral, Anna
  last_name: Fontcuberta i Morral
- first_name: Emad
  full_name: Oveisi, Emad
  last_name: Oveisi
- first_name: Enzo
  full_name: Bomal, Enzo
  last_name: Bomal
- first_name: Holger
  full_name: Frauenrath, Holger
  last_name: Frauenrath
citation:
  ama: Paripović D, Hartmann L, Steinrück H-G, et al. Lamellar carbon-aluminosilicate
    nanocomposites with macroscopic orientation. <i>Nanoscale</i>. 2021;13:13650-13657.
    doi:<a href="https://doi.org/10.1039/d1nr00807b">10.1039/d1nr00807b</a>
  apa: Paripović, D., Hartmann, L., Steinrück, H.-G., Magerl, A., Li-Destri, G., Fontana,
    Y., Fontcuberta i Morral, A., Oveisi, E., Bomal, E., &#38; Frauenrath, H. (2021).
    Lamellar carbon-aluminosilicate nanocomposites with macroscopic orientation. <i>Nanoscale</i>,
    <i>13</i>, 13650–13657. <a href="https://doi.org/10.1039/d1nr00807b">https://doi.org/10.1039/d1nr00807b</a>
  bibtex: '@article{Paripović_Hartmann_Steinrück_Magerl_Li-Destri_Fontana_Fontcuberta
    i Morral_Oveisi_Bomal_Frauenrath_2021, title={Lamellar carbon-aluminosilicate
    nanocomposites with macroscopic orientation}, volume={13}, DOI={<a href="https://doi.org/10.1039/d1nr00807b">10.1039/d1nr00807b</a>},
    journal={Nanoscale}, author={Paripović, Dragana and Hartmann, Lucia and Steinrück,
    Hans-Georg and Magerl, Andreas and Li-Destri, Giovanni and Fontana, Yannik and
    Fontcuberta i Morral, Anna and Oveisi, Emad and Bomal, Enzo and Frauenrath, Holger},
    year={2021}, pages={13650–13657} }'
  chicago: 'Paripović, Dragana, Lucia Hartmann, Hans-Georg Steinrück, Andreas Magerl,
    Giovanni Li-Destri, Yannik Fontana, Anna Fontcuberta i Morral, Emad Oveisi, Enzo
    Bomal, and Holger Frauenrath. “Lamellar Carbon-Aluminosilicate Nanocomposites
    with Macroscopic Orientation.” <i>Nanoscale</i> 13 (2021): 13650–57. <a href="https://doi.org/10.1039/d1nr00807b">https://doi.org/10.1039/d1nr00807b</a>.'
  ieee: 'D. Paripović <i>et al.</i>, “Lamellar carbon-aluminosilicate nanocomposites
    with macroscopic orientation,” <i>Nanoscale</i>, vol. 13, pp. 13650–13657, 2021,
    doi: <a href="https://doi.org/10.1039/d1nr00807b">10.1039/d1nr00807b</a>.'
  mla: Paripović, Dragana, et al. “Lamellar Carbon-Aluminosilicate Nanocomposites
    with Macroscopic Orientation.” <i>Nanoscale</i>, vol. 13, 2021, pp. 13650–57,
    doi:<a href="https://doi.org/10.1039/d1nr00807b">10.1039/d1nr00807b</a>.
  short: D. Paripović, L. Hartmann, H.-G. Steinrück, A. Magerl, G. Li-Destri, Y. Fontana,
    A. Fontcuberta i Morral, E. Oveisi, E. Bomal, H. Frauenrath, Nanoscale 13 (2021)
    13650–13657.
date_created: 2021-09-01T09:09:41Z
date_updated: 2022-01-06T06:55:57Z
department:
- _id: '633'
doi: 10.1039/d1nr00807b
intvolume: '        13'
language:
- iso: eng
page: 13650-13657
publication: Nanoscale
publication_identifier:
  issn:
  - 2040-3364
  - 2040-3372
publication_status: published
status: public
title: Lamellar carbon-aluminosilicate nanocomposites with macroscopic orientation
type: journal_article
user_id: '84268'
volume: 13
year: '2021'
...
---
_id: '23615'
abstract:
- lang: eng
  text: <p>Realization of extreme fast charging (XFC, ≤15 minutes) of lithium-ion
    batteries is imperative for the widespread adoption of electric vehicles.</p>
author:
- first_name: Partha P.
  full_name: Paul, Partha P.
  last_name: Paul
- first_name: Vivek
  full_name: Thampy, Vivek
  last_name: Thampy
- first_name: Chuntian
  full_name: Cao, Chuntian
  last_name: Cao
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
- first_name: Tanvir R.
  full_name: Tanim, Tanvir R.
  last_name: Tanim
- first_name: Alison R.
  full_name: Dunlop, Alison R.
  last_name: Dunlop
- first_name: Eric J.
  full_name: Dufek, Eric J.
  last_name: Dufek
- first_name: Stephen E.
  full_name: Trask, Stephen E.
  last_name: Trask
- first_name: Andrew N.
  full_name: Jansen, Andrew N.
  last_name: Jansen
- first_name: Michael F.
  full_name: Toney, Michael F.
  last_name: Toney
- first_name: Johanna
  full_name: Nelson Weker, Johanna
  last_name: Nelson Weker
citation:
  ama: Paul PP, Thampy V, Cao C, et al. Quantification of heterogeneous, irreversible
    lithium plating in extreme fast charging of lithium-ion batteries. <i>Energy &#38;
    Environmental Science</i>. 2021;14:4979-4988. doi:<a href="https://doi.org/10.1039/d1ee01216a">10.1039/d1ee01216a</a>
  apa: Paul, P. P., Thampy, V., Cao, C., Steinrück, H.-G., Tanim, T. R., Dunlop, A.
    R., Dufek, E. J., Trask, S. E., Jansen, A. N., Toney, M. F., &#38; Nelson Weker,
    J. (2021). Quantification of heterogeneous, irreversible lithium plating in extreme
    fast charging of lithium-ion batteries. <i>Energy &#38; Environmental Science</i>,
    <i>14</i>, 4979–4988. <a href="https://doi.org/10.1039/d1ee01216a">https://doi.org/10.1039/d1ee01216a</a>
  bibtex: '@article{Paul_Thampy_Cao_Steinrück_Tanim_Dunlop_Dufek_Trask_Jansen_Toney_et
    al._2021, title={Quantification of heterogeneous, irreversible lithium plating
    in extreme fast charging of lithium-ion batteries}, volume={14}, DOI={<a href="https://doi.org/10.1039/d1ee01216a">10.1039/d1ee01216a</a>},
    journal={Energy &#38; Environmental Science}, author={Paul, Partha P. and Thampy,
    Vivek and Cao, Chuntian and Steinrück, Hans-Georg and Tanim, Tanvir R. and Dunlop,
    Alison R. and Dufek, Eric J. and Trask, Stephen E. and Jansen, Andrew N. and Toney,
    Michael F. and et al.}, year={2021}, pages={4979–4988} }'
  chicago: 'Paul, Partha P., Vivek Thampy, Chuntian Cao, Hans-Georg Steinrück, Tanvir
    R. Tanim, Alison R. Dunlop, Eric J. Dufek, et al. “Quantification of Heterogeneous,
    Irreversible Lithium Plating in Extreme Fast Charging of Lithium-Ion Batteries.”
    <i>Energy &#38; Environmental Science</i> 14 (2021): 4979–88. <a href="https://doi.org/10.1039/d1ee01216a">https://doi.org/10.1039/d1ee01216a</a>.'
  ieee: 'P. P. Paul <i>et al.</i>, “Quantification of heterogeneous, irreversible
    lithium plating in extreme fast charging of lithium-ion batteries,” <i>Energy
    &#38; Environmental Science</i>, vol. 14, pp. 4979–4988, 2021, doi: <a href="https://doi.org/10.1039/d1ee01216a">10.1039/d1ee01216a</a>.'
  mla: Paul, Partha P., et al. “Quantification of Heterogeneous, Irreversible Lithium
    Plating in Extreme Fast Charging of Lithium-Ion Batteries.” <i>Energy &#38; Environmental
    Science</i>, vol. 14, 2021, pp. 4979–88, doi:<a href="https://doi.org/10.1039/d1ee01216a">10.1039/d1ee01216a</a>.
  short: P.P. Paul, V. Thampy, C. Cao, H.-G. Steinrück, T.R. Tanim, A.R. Dunlop, E.J.
    Dufek, S.E. Trask, A.N. Jansen, M.F. Toney, J. Nelson Weker, Energy &#38; Environmental
    Science 14 (2021) 4979–4988.
date_created: 2021-09-01T09:09:48Z
date_updated: 2022-01-06T06:55:57Z
department:
- _id: '633'
doi: 10.1039/d1ee01216a
intvolume: '        14'
language:
- iso: eng
page: 4979-4988
publication: Energy & Environmental Science
publication_identifier:
  issn:
  - 1754-5692
  - 1754-5706
publication_status: published
status: public
title: Quantification of heterogeneous, irreversible lithium plating in extreme fast
  charging of lithium-ion batteries
type: journal_article
user_id: '84268'
volume: 14
year: '2021'
...
---
_id: '23616'
author:
- first_name: Michael D.
  full_name: Galluzzo, Michael D.
  last_name: Galluzzo
- first_name: Lorena S.
  full_name: Grundy, Lorena S.
  last_name: Grundy
- first_name: Christopher J.
  full_name: Takacs, Christopher J.
  last_name: Takacs
- first_name: Chuntian
  full_name: Cao, Chuntian
  last_name: Cao
- first_name: Hans-Georg
  full_name: Steinrück, Hans-Georg
  id: '84268'
  last_name: Steinrück
  orcid: 0000-0001-6373-0877
- first_name: Sean
  full_name: Fu, Sean
  last_name: Fu
- first_name: Michael A.
  full_name: Rivas Valadez, Michael A.
  last_name: Rivas Valadez
- first_name: Michael F.
  full_name: Toney, Michael F.
  last_name: Toney
- first_name: Nitash P.
  full_name: Balsara, Nitash P.
  last_name: Balsara
citation:
  ama: Galluzzo MD, Grundy LS, Takacs CJ, et al. Orientation-Dependent Distortion
    of Lamellae in a Block Copolymer Electrolyte under DC Polarization. <i>Macromolecules</i>.
    2021;54:7808-7824. doi:<a href="https://doi.org/10.1021/acs.macromol.1c01295">10.1021/acs.macromol.1c01295</a>
  apa: Galluzzo, M. D., Grundy, L. S., Takacs, C. J., Cao, C., Steinrück, H.-G., Fu,
    S., Rivas Valadez, M. A., Toney, M. F., &#38; Balsara, N. P. (2021). Orientation-Dependent
    Distortion of Lamellae in a Block Copolymer Electrolyte under DC Polarization.
    <i>Macromolecules</i>, <i>54</i>, 7808–7824. <a href="https://doi.org/10.1021/acs.macromol.1c01295">https://doi.org/10.1021/acs.macromol.1c01295</a>
  bibtex: '@article{Galluzzo_Grundy_Takacs_Cao_Steinrück_Fu_Rivas Valadez_Toney_Balsara_2021,
    title={Orientation-Dependent Distortion of Lamellae in a Block Copolymer Electrolyte
    under DC Polarization}, volume={54}, DOI={<a href="https://doi.org/10.1021/acs.macromol.1c01295">10.1021/acs.macromol.1c01295</a>},
    journal={Macromolecules}, author={Galluzzo, Michael D. and Grundy, Lorena S. and
    Takacs, Christopher J. and Cao, Chuntian and Steinrück, Hans-Georg and Fu, Sean
    and Rivas Valadez, Michael A. and Toney, Michael F. and Balsara, Nitash P.}, year={2021},
    pages={7808–7824} }'
  chicago: 'Galluzzo, Michael D., Lorena S. Grundy, Christopher J. Takacs, Chuntian
    Cao, Hans-Georg Steinrück, Sean Fu, Michael A. Rivas Valadez, Michael F. Toney,
    and Nitash P. Balsara. “Orientation-Dependent Distortion of Lamellae in a Block
    Copolymer Electrolyte under DC Polarization.” <i>Macromolecules</i> 54 (2021):
    7808–24. <a href="https://doi.org/10.1021/acs.macromol.1c01295">https://doi.org/10.1021/acs.macromol.1c01295</a>.'
  ieee: 'M. D. Galluzzo <i>et al.</i>, “Orientation-Dependent Distortion of Lamellae
    in a Block Copolymer Electrolyte under DC Polarization,” <i>Macromolecules</i>,
    vol. 54, pp. 7808–7824, 2021, doi: <a href="https://doi.org/10.1021/acs.macromol.1c01295">10.1021/acs.macromol.1c01295</a>.'
  mla: Galluzzo, Michael D., et al. “Orientation-Dependent Distortion of Lamellae
    in a Block Copolymer Electrolyte under DC Polarization.” <i>Macromolecules</i>,
    vol. 54, 2021, pp. 7808–24, doi:<a href="https://doi.org/10.1021/acs.macromol.1c01295">10.1021/acs.macromol.1c01295</a>.
  short: M.D. Galluzzo, L.S. Grundy, C.J. Takacs, C. Cao, H.-G. Steinrück, S. Fu,
    M.A. Rivas Valadez, M.F. Toney, N.P. Balsara, Macromolecules 54 (2021) 7808–7824.
date_created: 2021-09-01T09:09:55Z
date_updated: 2022-01-06T06:55:57Z
department:
- _id: '633'
doi: 10.1021/acs.macromol.1c01295
intvolume: '        54'
language:
- iso: eng
page: 7808-7824
publication: Macromolecules
publication_identifier:
  issn:
  - 0024-9297
  - 1520-5835
publication_status: published
status: public
title: Orientation-Dependent Distortion of Lamellae in a Block Copolymer Electrolyte
  under DC Polarization
type: journal_article
user_id: '84268'
volume: 54
year: '2021'
...
---
_id: '22636'
abstract:
- lang: eng
  text: <jats:p>The effects that solid–liquid interfaces exert on the aggregation
    of proteins and peptides are of high relevance for various fields of basic and
    applied research, ranging from molecular biology and biomedicine to nanotechnology.
    While the influence of surface chemistry has received a lot of attention in this
    context, the role of surface topography has mostly been neglected so far. In this
    work, therefore, we investigate the aggregation of the type 2 diabetes-associated
    peptide hormone hIAPP in contact with flat and nanopatterned silicon oxide surfaces.
    The nanopatterned surfaces are produced by ion beam irradiation, resulting in
    well-defined anisotropic ripple patterns with heights and periodicities of about
    1.5 and 30 nm, respectively. Using time-lapse atomic force microscopy, the morphology
    of the hIAPP aggregates is characterized quantitatively. Aggregation results in
    both amorphous aggregates and amyloid fibrils, with the presence of the nanopatterns
    leading to retarded fibrillization and stronger amorphous aggregation. This is
    attributed to structural differences in the amorphous aggregates formed at the
    nanopatterned surface, which result in a lower propensity for nucleating amyloid
    fibrillization. Our results demonstrate that nanoscale surface topography may
    modulate peptide and protein aggregation pathways in complex and intricate ways.</jats:p>
author:
- first_name: Marcel
  full_name: Hanke, Marcel
  last_name: Hanke
- first_name: Yu
  full_name: Yang, Yu
  last_name: Yang
- first_name: Yuxin
  full_name: Ji, Yuxin
  last_name: Ji
- first_name: Guido
  full_name: Grundmeier, Guido
  id: '194'
  last_name: Grundmeier
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
citation:
  ama: Hanke M, Yang Y, Ji Y, Grundmeier G, Keller A. Nanoscale Surface Topography
    Modulates hIAPP Aggregation Pathways at Solid–Liquid Interfaces. <i>International
    Journal of Molecular Sciences</i>. 2021;22:5142. doi:<a href="https://doi.org/10.3390/ijms22105142">10.3390/ijms22105142</a>
  apa: Hanke, M., Yang, Y., Ji, Y., Grundmeier, G., &#38; Keller, A. (2021). Nanoscale
    Surface Topography Modulates hIAPP Aggregation Pathways at Solid–Liquid Interfaces.
    <i>International Journal of Molecular Sciences</i>, <i>22</i>, 5142. <a href="https://doi.org/10.3390/ijms22105142">https://doi.org/10.3390/ijms22105142</a>
  bibtex: '@article{Hanke_Yang_Ji_Grundmeier_Keller_2021, title={Nanoscale Surface
    Topography Modulates hIAPP Aggregation Pathways at Solid–Liquid Interfaces}, volume={22},
    DOI={<a href="https://doi.org/10.3390/ijms22105142">10.3390/ijms22105142</a>},
    journal={International Journal of Molecular Sciences}, author={Hanke, Marcel and
    Yang, Yu and Ji, Yuxin and Grundmeier, Guido and Keller, Adrian}, year={2021},
    pages={5142} }'
  chicago: 'Hanke, Marcel, Yu Yang, Yuxin Ji, Guido Grundmeier, and Adrian Keller.
    “Nanoscale Surface Topography Modulates HIAPP Aggregation Pathways at Solid–Liquid
    Interfaces.” <i>International Journal of Molecular Sciences</i> 22 (2021): 5142.
    <a href="https://doi.org/10.3390/ijms22105142">https://doi.org/10.3390/ijms22105142</a>.'
  ieee: M. Hanke, Y. Yang, Y. Ji, G. Grundmeier, and A. Keller, “Nanoscale Surface
    Topography Modulates hIAPP Aggregation Pathways at Solid–Liquid Interfaces,” <i>International
    Journal of Molecular Sciences</i>, vol. 22, p. 5142, 2021.
  mla: Hanke, Marcel, et al. “Nanoscale Surface Topography Modulates HIAPP Aggregation
    Pathways at Solid–Liquid Interfaces.” <i>International Journal of Molecular Sciences</i>,
    vol. 22, 2021, p. 5142, doi:<a href="https://doi.org/10.3390/ijms22105142">10.3390/ijms22105142</a>.
  short: M. Hanke, Y. Yang, Y. Ji, G. Grundmeier, A. Keller, International Journal
    of Molecular Sciences 22 (2021) 5142.
date_created: 2021-07-08T11:43:14Z
date_updated: 2022-01-06T06:55:37Z
department:
- _id: '302'
doi: 10.3390/ijms22105142
intvolume: '        22'
language:
- iso: eng
page: '5142'
publication: International Journal of Molecular Sciences
publication_identifier:
  issn:
  - 1422-0067
publication_status: published
status: public
title: Nanoscale Surface Topography Modulates hIAPP Aggregation Pathways at Solid–Liquid
  Interfaces
type: journal_article
user_id: '48864'
volume: 22
year: '2021'
...
---
_id: '22637'
abstract:
- lang: eng
  text: "<jats:title>Abstract</jats:title>\r\n               <jats:p>Doxorubicin (DOX)
    is a common drug in cancer chemotherapy, and its high DNA-binding affinity can
    be harnessed in preparing DOX-loaded DNA nanostructures for targeted delivery
    and therapeutics. Although DOX has been widely studied, the existing literature
    of DOX-loaded DNA-carriers remains limited and incoherent. Here, based on an in-depth
    spectroscopic analysis, we characterize and optimize the DOX loading into different
    2D and 3D scaffolded DNA origami nanostructures (DONs). In our experimental conditions,
    all DONs show similar DOX binding capacities (one DOX molecule per two to three
    base pairs), and the binding equilibrium is reached within seconds, remarkably
    faster than previously acknowledged. To characterize drug release profiles, DON
    degradation and DOX release from the complexes upon DNase I digestion was studied.
    For the employed DONs, the relative doses (DOX molecules released per unit time)
    may vary by two orders of magnitude depending on the DON superstructure. In addition,
    we identify DOX aggregation mechanisms and spectral changes linked to pH, magnesium,
    and DOX concentration. These features have been largely ignored in experimenting
    with DNA nanostructures, but are probably the major sources of the incoherence
    of the experimental results so far. Therefore, we believe this work can act as
    a guide to tailoring the release profiles and developing better drug delivery
    systems based on DNA-carriers.</jats:p>"
author:
- first_name: Heini
  full_name: Ijäs, Heini
  last_name: Ijäs
- first_name: Boxuan
  full_name: Shen, Boxuan
  last_name: Shen
- first_name: Amelie
  full_name: Heuer-Jungemann, Amelie
  last_name: Heuer-Jungemann
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
- first_name: Mauri A
  full_name: Kostiainen, Mauri A
  last_name: Kostiainen
- first_name: Tim
  full_name: Liedl, Tim
  last_name: Liedl
- first_name: Janne A
  full_name: Ihalainen, Janne A
  last_name: Ihalainen
- first_name: Veikko
  full_name: Linko, Veikko
  last_name: Linko
citation:
  ama: Ijäs H, Shen B, Heuer-Jungemann A, et al. Unraveling the interaction between
    doxorubicin and DNA origami nanostructures for customizable chemotherapeutic drug
    release. <i>Nucleic Acids Research</i>. 2021;49:3048-3062. doi:<a href="https://doi.org/10.1093/nar/gkab097">10.1093/nar/gkab097</a>
  apa: Ijäs, H., Shen, B., Heuer-Jungemann, A., Keller, A., Kostiainen, M. A., Liedl,
    T., … Linko, V. (2021). Unraveling the interaction between doxorubicin and DNA
    origami nanostructures for customizable chemotherapeutic drug release. <i>Nucleic
    Acids Research</i>, <i>49</i>, 3048–3062. <a href="https://doi.org/10.1093/nar/gkab097">https://doi.org/10.1093/nar/gkab097</a>
  bibtex: '@article{Ijäs_Shen_Heuer-Jungemann_Keller_Kostiainen_Liedl_Ihalainen_Linko_2021,
    title={Unraveling the interaction between doxorubicin and DNA origami nanostructures
    for customizable chemotherapeutic drug release}, volume={49}, DOI={<a href="https://doi.org/10.1093/nar/gkab097">10.1093/nar/gkab097</a>},
    journal={Nucleic Acids Research}, author={Ijäs, Heini and Shen, Boxuan and Heuer-Jungemann,
    Amelie and Keller, Adrian and Kostiainen, Mauri A and Liedl, Tim and Ihalainen,
    Janne A and Linko, Veikko}, year={2021}, pages={3048–3062} }'
  chicago: 'Ijäs, Heini, Boxuan Shen, Amelie Heuer-Jungemann, Adrian Keller, Mauri A
    Kostiainen, Tim Liedl, Janne A Ihalainen, and Veikko Linko. “Unraveling the Interaction
    between Doxorubicin and DNA Origami Nanostructures for Customizable Chemotherapeutic
    Drug Release.” <i>Nucleic Acids Research</i> 49 (2021): 3048–62. <a href="https://doi.org/10.1093/nar/gkab097">https://doi.org/10.1093/nar/gkab097</a>.'
  ieee: H. Ijäs <i>et al.</i>, “Unraveling the interaction between doxorubicin and
    DNA origami nanostructures for customizable chemotherapeutic drug release,” <i>Nucleic
    Acids Research</i>, vol. 49, pp. 3048–3062, 2021.
  mla: Ijäs, Heini, et al. “Unraveling the Interaction between Doxorubicin and DNA
    Origami Nanostructures for Customizable Chemotherapeutic Drug Release.” <i>Nucleic
    Acids Research</i>, vol. 49, 2021, pp. 3048–62, doi:<a href="https://doi.org/10.1093/nar/gkab097">10.1093/nar/gkab097</a>.
  short: H. Ijäs, B. Shen, A. Heuer-Jungemann, A. Keller, M.A. Kostiainen, T. Liedl,
    J.A. Ihalainen, V. Linko, Nucleic Acids Research 49 (2021) 3048–3062.
date_created: 2021-07-08T11:46:53Z
date_updated: 2022-01-06T06:55:37Z
department:
- _id: '302'
doi: 10.1093/nar/gkab097
intvolume: '        49'
language:
- iso: eng
page: 3048-3062
publication: Nucleic Acids Research
publication_identifier:
  issn:
  - 0305-1048
  - 1362-4962
publication_status: published
status: public
title: Unraveling the interaction between doxorubicin and DNA origami nanostructures
  for customizable chemotherapeutic drug release
type: journal_article
user_id: '48864'
volume: 49
year: '2021'
...
---
_id: '22638'
author:
- first_name: Y
  full_name: Xin, Y
  last_name: Xin
- first_name: B
  full_name: Shen, B
  last_name: Shen
- first_name: MA
  full_name: Kostiainen, MA
  last_name: Kostiainen
- first_name: Guido
  full_name: Grundmeier, Guido
  id: '194'
  last_name: Grundmeier
- first_name: M
  full_name: Castro, M
  last_name: Castro
- first_name: V
  full_name: Linko, V
  last_name: Linko
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
citation:
  ama: Xin Y, Shen B, Kostiainen M, et al. Scaling Up DNA Origami Lattice Assembly.
    <i>Chemistry – A European Journal</i>. 2021;27(33):8564-8571. doi:<a href="https://doi.org/10.1002/chem.202100784">10.1002/chem.202100784</a>
  apa: Xin, Y., Shen, B., Kostiainen, M., Grundmeier, G., Castro, M., Linko, V., &#38;
    Keller, A. (2021). Scaling Up DNA Origami Lattice Assembly. <i>Chemistry – A European
    Journal</i>, <i>27</i>(33), 8564–8571. <a href="https://doi.org/10.1002/chem.202100784">https://doi.org/10.1002/chem.202100784</a>
  bibtex: '@article{Xin_Shen_Kostiainen_Grundmeier_Castro_Linko_Keller_2021, title={Scaling
    Up DNA Origami Lattice Assembly.}, volume={27}, DOI={<a href="https://doi.org/10.1002/chem.202100784">10.1002/chem.202100784</a>},
    number={33}, journal={Chemistry – A European Journal}, author={Xin, Y and Shen,
    B and Kostiainen, MA and Grundmeier, Guido and Castro, M and Linko, V and Keller,
    Adrian}, year={2021}, pages={8564–8571} }'
  chicago: 'Xin, Y, B Shen, MA Kostiainen, Guido Grundmeier, M Castro, V Linko, and
    Adrian Keller. “Scaling Up DNA Origami Lattice Assembly.” <i>Chemistry – A European
    Journal</i> 27, no. 33 (2021): 8564–71. <a href="https://doi.org/10.1002/chem.202100784">https://doi.org/10.1002/chem.202100784</a>.'
  ieee: Y. Xin <i>et al.</i>, “Scaling Up DNA Origami Lattice Assembly.,” <i>Chemistry
    – A European Journal</i>, vol. 27, no. 33, pp. 8564–8571, 2021.
  mla: Xin, Y., et al. “Scaling Up DNA Origami Lattice Assembly.” <i>Chemistry – A
    European Journal</i>, vol. 27, no. 33, 2021, pp. 8564–71, doi:<a href="https://doi.org/10.1002/chem.202100784">10.1002/chem.202100784</a>.
  short: Y. Xin, B. Shen, M. Kostiainen, G. Grundmeier, M. Castro, V. Linko, A. Keller,
    Chemistry – A European Journal 27 (2021) 8564–8571.
date_created: 2021-07-08T11:48:08Z
date_updated: 2022-01-06T06:55:37Z
department:
- _id: '302'
doi: 10.1002/chem.202100784
external_id:
  pmid:
  - '33780583'
intvolume: '        27'
issue: '33'
language:
- iso: eng
page: 8564-8571
pmid: '1'
publication: Chemistry – A European Journal
publication_identifier:
  issn:
  - 0947-6539
  - 1521-3765
status: public
title: Scaling Up DNA Origami Lattice Assembly.
type: journal_article
user_id: '48864'
volume: 27
year: '2021'
...
---
_id: '22639'
author:
- first_name: Y
  full_name: Yang, Y
  last_name: Yang
- first_name: S
  full_name: Knust, S
  last_name: Knust
- first_name: S
  full_name: Schwiderek, S
  last_name: Schwiderek
- first_name: Q
  full_name: Qin, Q
  last_name: Qin
- first_name: Q
  full_name: Yun, Q
  last_name: Yun
- first_name: Guido
  full_name: Grundmeier, Guido
  id: '194'
  last_name: Grundmeier
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
citation:
  ama: 'Yang Y, Knust S, Schwiderek S, et al. Protein Adsorption at Nanorough Titanium
    Oxide Surfaces: The Importance of Surface Statistical Parameters beyond Surface
    Roughness. <i>Nanomaterials</i>. 2021;11(2):357. doi:<a href="https://doi.org/10.3390/nano11020357">10.3390/nano11020357</a>'
  apa: 'Yang, Y., Knust, S., Schwiderek, S., Qin, Q., Yun, Q., Grundmeier, G., &#38;
    Keller, A. (2021). Protein Adsorption at Nanorough Titanium Oxide Surfaces: The
    Importance of Surface Statistical Parameters beyond Surface Roughness. <i>Nanomaterials</i>,
    <i>11</i>(2), 357. <a href="https://doi.org/10.3390/nano11020357">https://doi.org/10.3390/nano11020357</a>'
  bibtex: '@article{Yang_Knust_Schwiderek_Qin_Yun_Grundmeier_Keller_2021, title={Protein
    Adsorption at Nanorough Titanium Oxide Surfaces: The Importance of Surface Statistical
    Parameters beyond Surface Roughness.}, volume={11}, DOI={<a href="https://doi.org/10.3390/nano11020357">10.3390/nano11020357</a>},
    number={2}, journal={Nanomaterials}, author={Yang, Y and Knust, S and Schwiderek,
    S and Qin, Q and Yun, Q and Grundmeier, Guido and Keller, Adrian}, year={2021},
    pages={357} }'
  chicago: 'Yang, Y, S Knust, S Schwiderek, Q Qin, Q Yun, Guido Grundmeier, and Adrian
    Keller. “Protein Adsorption at Nanorough Titanium Oxide Surfaces: The Importance
    of Surface Statistical Parameters beyond Surface Roughness.” <i>Nanomaterials</i>
    11, no. 2 (2021): 357. <a href="https://doi.org/10.3390/nano11020357">https://doi.org/10.3390/nano11020357</a>.'
  ieee: 'Y. Yang <i>et al.</i>, “Protein Adsorption at Nanorough Titanium Oxide Surfaces:
    The Importance of Surface Statistical Parameters beyond Surface Roughness.,” <i>Nanomaterials</i>,
    vol. 11, no. 2, p. 357, 2021.'
  mla: 'Yang, Y., et al. “Protein Adsorption at Nanorough Titanium Oxide Surfaces:
    The Importance of Surface Statistical Parameters beyond Surface Roughness.” <i>Nanomaterials</i>,
    vol. 11, no. 2, 2021, p. 357, doi:<a href="https://doi.org/10.3390/nano11020357">10.3390/nano11020357</a>.'
  short: Y. Yang, S. Knust, S. Schwiderek, Q. Qin, Q. Yun, G. Grundmeier, A. Keller,
    Nanomaterials 11 (2021) 357.
date_created: 2021-07-08T11:50:44Z
date_updated: 2022-01-06T06:55:37Z
department:
- _id: '302'
doi: 10.3390/nano11020357
external_id:
  pmid:
  - '33535535'
intvolume: '        11'
issue: '2'
language:
- iso: eng
page: ' 357 '
pmid: '1'
publication: Nanomaterials
publication_identifier:
  issn:
  - 2079-4991
status: public
title: 'Protein Adsorption at Nanorough Titanium Oxide Surfaces: The Importance of
  Surface Statistical Parameters beyond Surface Roughness.'
type: journal_article
user_id: '48864'
volume: 11
year: '2021'
...
