---
_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: '23815'
abstract:
- lang: eng
  text: In this paper, silicon oxynitride films (SiON) grown by plasma-enhanced chemical
    vapor deposition are investigated. As precursor gases silane (SiH4), nitrous oxide
    (N2O), nitrogen (N2) and ammonia (NH3) are used with different compositions. We
    find that for achieving high nitrogen content adding ammonia to the precursor
    mix is most efficient. Moreover, we investigate the balance between adsorption
    and desorption processes during film growth by investigating the film growth rate
    as a function of the substrate temperature. From these data we are able to determine
    an effective activation energy for the film growth, corresponding to the difference
    between adsorption and desorption energy. Finally, we have thoroughly investigated
    the optical properties of the films using spectroscopic ellipsometry. From these
    measurements, we suggest a parametrized model for the refractive index and extinction
    coefficient in a wide range of compositions based on a Cauchy- and a Lorentz-fit.
article_number: '138887'
article_type: original
author:
- first_name: R.
  full_name: Aschwanden, R.
  last_name: Aschwanden
- first_name: R.
  full_name: Köthemann, R.
  last_name: Köthemann
- first_name: M.
  full_name: Albert, M.
  last_name: Albert
- first_name: C.
  full_name: Golla, C.
  last_name: Golla
- first_name: Cedrik
  full_name: Meier, Cedrik
  id: '20798'
  last_name: Meier
  orcid: https://orcid.org/0000-0002-3787-3572
citation:
  ama: Aschwanden R, Köthemann R, Albert M, Golla C, Meier C. Optical properties of
    silicon oxynitride films grown by plasma-enhanced chemical vapor deposition. <i>Thin
    Solid Films</i>. 2021;736. doi:<a href="https://doi.org/10.1016/j.tsf.2021.138887">10.1016/j.tsf.2021.138887</a>
  apa: Aschwanden, R., Köthemann, R., Albert, M., Golla, C., &#38; Meier, C. (2021).
    Optical properties of silicon oxynitride films grown by plasma-enhanced chemical
    vapor deposition. <i>Thin Solid Films</i>, <i>736</i>. <a href="https://doi.org/10.1016/j.tsf.2021.138887">https://doi.org/10.1016/j.tsf.2021.138887</a>
  bibtex: '@article{Aschwanden_Köthemann_Albert_Golla_Meier_2021, title={Optical properties
    of silicon oxynitride films grown by plasma-enhanced chemical vapor deposition},
    volume={736}, DOI={<a href="https://doi.org/10.1016/j.tsf.2021.138887">10.1016/j.tsf.2021.138887</a>},
    number={138887}, journal={Thin Solid Films}, author={Aschwanden, R. and Köthemann,
    R. and Albert, M. and Golla, C. and Meier, Cedrik}, year={2021} }'
  chicago: Aschwanden, R., R. Köthemann, M. Albert, C. Golla, and Cedrik Meier. “Optical
    Properties of Silicon Oxynitride Films Grown by Plasma-Enhanced Chemical Vapor
    Deposition.” <i>Thin Solid Films</i> 736 (2021). <a href="https://doi.org/10.1016/j.tsf.2021.138887">https://doi.org/10.1016/j.tsf.2021.138887</a>.
  ieee: R. Aschwanden, R. Köthemann, M. Albert, C. Golla, and C. Meier, “Optical properties
    of silicon oxynitride films grown by plasma-enhanced chemical vapor deposition,”
    <i>Thin Solid Films</i>, vol. 736, 2021.
  mla: Aschwanden, R., et al. “Optical Properties of Silicon Oxynitride Films Grown
    by Plasma-Enhanced Chemical Vapor Deposition.” <i>Thin Solid Films</i>, vol. 736,
    138887, 2021, doi:<a href="https://doi.org/10.1016/j.tsf.2021.138887">10.1016/j.tsf.2021.138887</a>.
  short: R. Aschwanden, R. Köthemann, M. Albert, C. Golla, C. Meier, Thin Solid Films
    736 (2021).
date_created: 2021-09-06T15:11:54Z
date_updated: 2022-01-06T06:56:00Z
department:
- _id: '15'
doi: 10.1016/j.tsf.2021.138887
intvolume: '       736'
language:
- iso: eng
project:
- _id: '53'
  name: TRR 142
- _id: '55'
  name: TRR 142 - Project Area B
- _id: '66'
  name: TRR 142 - Subproject B1
publication: Thin Solid Films
publication_identifier:
  issn:
  - 0040-6090
publication_status: published
status: public
title: Optical properties of silicon oxynitride films grown by plasma-enhanced chemical
  vapor deposition
type: journal_article
user_id: '20798'
volume: 736
year: '2021'
...
---
_id: '20900'
article_number: '126009'
author:
- first_name: M.
  full_name: Albert, M.
  last_name: Albert
- first_name: C.
  full_name: Golla, C.
  last_name: Golla
- first_name: Cedrik
  full_name: Meier, Cedrik
  id: '20798'
  last_name: Meier
  orcid: https://orcid.org/0000-0002-3787-3572
citation:
  ama: Albert M, Golla C, Meier C. Optical in-situ temperature management for high-quality
    ZnO molecular beam epitaxy. <i>Journal of Crystal Growth</i>. 2021;557. doi:<a
    href="https://doi.org/10.1016/j.jcrysgro.2020.126009">10.1016/j.jcrysgro.2020.126009</a>
  apa: Albert, M., Golla, C., &#38; Meier, C. (2021). Optical in-situ temperature
    management for high-quality ZnO molecular beam epitaxy. <i>Journal of Crystal
    Growth</i>, <i>557</i>. <a href="https://doi.org/10.1016/j.jcrysgro.2020.126009">https://doi.org/10.1016/j.jcrysgro.2020.126009</a>
  bibtex: '@article{Albert_Golla_Meier_2021, title={Optical in-situ temperature management
    for high-quality ZnO molecular beam epitaxy}, volume={557}, DOI={<a href="https://doi.org/10.1016/j.jcrysgro.2020.126009">10.1016/j.jcrysgro.2020.126009</a>},
    number={126009}, journal={Journal of Crystal Growth}, author={Albert, M. and Golla,
    C. and Meier, Cedrik}, year={2021} }'
  chicago: Albert, M., C. Golla, and Cedrik Meier. “Optical In-Situ Temperature Management
    for High-Quality ZnO Molecular Beam Epitaxy.” <i>Journal of Crystal Growth</i>
    557 (2021). <a href="https://doi.org/10.1016/j.jcrysgro.2020.126009">https://doi.org/10.1016/j.jcrysgro.2020.126009</a>.
  ieee: M. Albert, C. Golla, and C. Meier, “Optical in-situ temperature management
    for high-quality ZnO molecular beam epitaxy,” <i>Journal of Crystal Growth</i>,
    vol. 557, 2021.
  mla: Albert, M., et al. “Optical In-Situ Temperature Management for High-Quality
    ZnO Molecular Beam Epitaxy.” <i>Journal of Crystal Growth</i>, vol. 557, 126009,
    2021, doi:<a href="https://doi.org/10.1016/j.jcrysgro.2020.126009">10.1016/j.jcrysgro.2020.126009</a>.
  short: M. Albert, C. Golla, C. Meier, Journal of Crystal Growth 557 (2021).
date_created: 2021-01-12T13:52:31Z
date_updated: 2022-01-06T06:54:41Z
department:
- _id: '15'
- _id: '230'
- _id: '429'
doi: 10.1016/j.jcrysgro.2020.126009
intvolume: '       557'
language:
- iso: eng
project:
- _id: '53'
  name: TRR 142
- _id: '55'
  name: TRR 142 - Project Area B
- _id: '66'
  name: TRR 142 - Subproject B1
publication: Journal of Crystal Growth
publication_identifier:
  issn:
  - 0022-0248
publication_status: published
status: public
title: Optical in-situ temperature management for high-quality ZnO molecular beam
  epitaxy
type: journal_article
user_id: '20798'
volume: 557
year: '2021'
...
---
_id: '22214'
article_number: '195311'
author:
- first_name: Johannes
  full_name: Mund, Johannes
  last_name: Mund
- first_name: Dmitri R.
  full_name: Yakovlev, Dmitri R.
  last_name: Yakovlev
- first_name: Sergey
  full_name: Sadofev, Sergey
  last_name: Sadofev
- first_name: Cedrik
  full_name: Meier, Cedrik
  id: '20798'
  last_name: Meier
  orcid: https://orcid.org/0000-0002-3787-3572
- first_name: Manfred
  full_name: Bayer, Manfred
  last_name: Bayer
citation:
  ama: Mund J, Yakovlev DR, Sadofev S, Meier C, Bayer M. Second harmonic generation
    on excitons in ZnO/(Zn,Mg)O quantum wells with built-in electric fields. <i>Physical
    Review B</i>. 2021;103. doi:<a href="https://doi.org/10.1103/physrevb.103.195311">10.1103/physrevb.103.195311</a>
  apa: Mund, J., Yakovlev, D. R., Sadofev, S., Meier, C., &#38; Bayer, M. (2021).
    Second harmonic generation on excitons in ZnO/(Zn,Mg)O quantum wells with built-in
    electric fields. <i>Physical Review B</i>, <i>103</i>. <a href="https://doi.org/10.1103/physrevb.103.195311">https://doi.org/10.1103/physrevb.103.195311</a>
  bibtex: '@article{Mund_Yakovlev_Sadofev_Meier_Bayer_2021, title={Second harmonic
    generation on excitons in ZnO/(Zn,Mg)O quantum wells with built-in electric fields},
    volume={103}, DOI={<a href="https://doi.org/10.1103/physrevb.103.195311">10.1103/physrevb.103.195311</a>},
    number={195311}, journal={Physical Review B}, author={Mund, Johannes and Yakovlev,
    Dmitri R. and Sadofev, Sergey and Meier, Cedrik and Bayer, Manfred}, year={2021}
    }'
  chicago: Mund, Johannes, Dmitri R. Yakovlev, Sergey Sadofev, Cedrik Meier, and Manfred
    Bayer. “Second Harmonic Generation on Excitons in ZnO/(Zn,Mg)O Quantum Wells with
    Built-in Electric Fields.” <i>Physical Review B</i> 103 (2021). <a href="https://doi.org/10.1103/physrevb.103.195311">https://doi.org/10.1103/physrevb.103.195311</a>.
  ieee: J. Mund, D. R. Yakovlev, S. Sadofev, C. Meier, and M. Bayer, “Second harmonic
    generation on excitons in ZnO/(Zn,Mg)O quantum wells with built-in electric fields,”
    <i>Physical Review B</i>, vol. 103, 2021.
  mla: Mund, Johannes, et al. “Second Harmonic Generation on Excitons in ZnO/(Zn,Mg)O
    Quantum Wells with Built-in Electric Fields.” <i>Physical Review B</i>, vol. 103,
    195311, 2021, doi:<a href="https://doi.org/10.1103/physrevb.103.195311">10.1103/physrevb.103.195311</a>.
  short: J. Mund, D.R. Yakovlev, S. Sadofev, C. Meier, M. Bayer, Physical Review B
    103 (2021).
date_created: 2021-05-19T09:36:16Z
date_updated: 2022-01-06T06:55:29Z
department:
- _id: '15'
doi: 10.1103/physrevb.103.195311
intvolume: '       103'
language:
- iso: eng
project:
- _id: '66'
  name: TRR 142 - Subproject B1
publication: Physical Review B
publication_identifier:
  issn:
  - 2469-9950
  - 2469-9969
publication_status: published
status: public
title: Second harmonic generation on excitons in ZnO/(Zn,Mg)O quantum wells with built-in
  electric fields
type: journal_article
user_id: '20798'
volume: 103
year: '2021'
...
---
_id: '22215'
abstract:
- lang: eng
  text: Topological states of light represent counterintuitive optical modes localized
    at boundaries of finite-size optical structures that originate from the properties
    of the bulk. Being defined by bulk properties, such boundary states are insensitive
    to certain types of perturbations, thus naturally enhancing robustness of photonic
    circuitries. Conventionally, the N-dimensional bulk modes correspond to (N – 1)-dimensional
    boundary states. The higher-order bulk-boundary correspondence relates N-dimensional
    bulk to boundary states with dimensionality reduced by more than 1. A special
    interest lies in miniaturization of such higher-order topological states to the
    nanoscale. Here, we realize nanoscale topological corner states in metasurfaces
    with C6-symmetric honeycomb lattices. We directly observe nanoscale topology-empowered
    edge and corner localizations of light and enhancement of light–matter interactions
    via a nonlinear imaging technique. Control of light at the nanoscale empowered
    by topology may facilitate miniaturization and on-chip integration of classical
    and quantum photonic devices.
article_type: original
author:
- first_name: Sergey S.
  full_name: Kruk, Sergey S.
  last_name: Kruk
- first_name: Wenlong
  full_name: Gao, Wenlong
  last_name: Gao
- first_name: Duk-Yong
  full_name: Choi, Duk-Yong
  last_name: Choi
- first_name: Thomas
  full_name: Zentgraf, Thomas
  id: '30525'
  last_name: Zentgraf
  orcid: 0000-0002-8662-1101
- first_name: Shuang
  full_name: Zhang, Shuang
  last_name: Zhang
- first_name: Yuri
  full_name: Kivshar, Yuri
  last_name: Kivshar
citation:
  ama: Kruk SS, Gao W, Choi D-Y, Zentgraf T, Zhang S, Kivshar Y. Nonlinear Imaging
    of Nanoscale Topological Corner States. <i>Nano Letters</i>. 2021;21(11):4592–4597.
    doi:<a href="https://doi.org/10.1021/acs.nanolett.1c00449">10.1021/acs.nanolett.1c00449</a>
  apa: Kruk, S. S., Gao, W., Choi, D.-Y., Zentgraf, T., Zhang, S., &#38; Kivshar,
    Y. (2021). Nonlinear Imaging of Nanoscale Topological Corner States. <i>Nano Letters</i>,
    <i>21</i>(11), 4592–4597. <a href="https://doi.org/10.1021/acs.nanolett.1c00449">https://doi.org/10.1021/acs.nanolett.1c00449</a>
  bibtex: '@article{Kruk_Gao_Choi_Zentgraf_Zhang_Kivshar_2021, title={Nonlinear Imaging
    of Nanoscale Topological Corner States}, volume={21}, DOI={<a href="https://doi.org/10.1021/acs.nanolett.1c00449">10.1021/acs.nanolett.1c00449</a>},
    number={11}, journal={Nano Letters}, publisher={ACS}, author={Kruk, Sergey S.
    and Gao, Wenlong and Choi, Duk-Yong and Zentgraf, Thomas and Zhang, Shuang and
    Kivshar, Yuri}, year={2021}, pages={4592–4597} }'
  chicago: 'Kruk, Sergey S., Wenlong Gao, Duk-Yong Choi, Thomas Zentgraf, Shuang Zhang,
    and Yuri Kivshar. “Nonlinear Imaging of Nanoscale Topological Corner States.”
    <i>Nano Letters</i> 21, no. 11 (2021): 4592–4597. <a href="https://doi.org/10.1021/acs.nanolett.1c00449">https://doi.org/10.1021/acs.nanolett.1c00449</a>.'
  ieee: S. S. Kruk, W. Gao, D.-Y. Choi, T. Zentgraf, S. Zhang, and Y. Kivshar, “Nonlinear
    Imaging of Nanoscale Topological Corner States,” <i>Nano Letters</i>, vol. 21,
    no. 11, pp. 4592–4597, 2021.
  mla: Kruk, Sergey S., et al. “Nonlinear Imaging of Nanoscale Topological Corner
    States.” <i>Nano Letters</i>, vol. 21, no. 11, ACS, 2021, pp. 4592–4597, doi:<a
    href="https://doi.org/10.1021/acs.nanolett.1c00449">10.1021/acs.nanolett.1c00449</a>.
  short: S.S. Kruk, W. Gao, D.-Y. Choi, T. Zentgraf, S. Zhang, Y. Kivshar, Nano Letters
    21 (2021) 4592–4597.
date_created: 2021-05-19T12:48:36Z
date_updated: 2022-01-06T06:55:29Z
department:
- _id: '15'
- _id: '230'
- _id: '289'
doi: 10.1021/acs.nanolett.1c00449
intvolume: '        21'
issue: '11'
language:
- iso: eng
page: 4592–4597
publication: Nano Letters
publication_identifier:
  issn:
  - 1530-6984
  - 1530-6992
publication_status: published
publisher: ACS
quality_controlled: '1'
status: public
title: Nonlinear Imaging of Nanoscale Topological Corner States
type: journal_article
user_id: '30525'
volume: 21
year: '2021'
...
---
_id: '22450'
abstract:
- lang: eng
  text: We realize and investigate a nonlinear metasurface taking advantage of intersubband
    transitions in ultranarrow GaN/AlN multi-quantum well heterostructures. Owing
    to huge band offsets, the structures offer resonant transitions in the telecom
    window around 1.55 µm. These heterostructures are functionalized with an array
    of plasmonic antennas featuring cross-polarized resonances at these near-infrared
    wavelengths and their second harmonic. This kind of nonlinear metasurface allows
    for substantial second-harmonic generation at normal incidence which is completely
    absent for an antenna array without the multi-quantum well structure underneath.
    While the second harmonic is originally radiated only into the plane of the quantum
    wells, a proper geometrical arrangement of the plasmonic elements permits the
    redirection of the second-harmonic light to free-space radiation, which is emitted
    perpendicular to the surface.
article_number: '2134'
article_type: original
author:
- first_name: Jan
  full_name: Mundry, Jan
  last_name: Mundry
- first_name: Florian
  full_name: Spreyer, Florian
  last_name: Spreyer
- first_name: Valentin
  full_name: Jmerik, Valentin
  last_name: Jmerik
- first_name: Sergey
  full_name: Ivanov, Sergey
  last_name: Ivanov
- first_name: Thomas
  full_name: Zentgraf, Thomas
  id: '30525'
  last_name: Zentgraf
  orcid: 0000-0002-8662-1101
- first_name: Markus
  full_name: Betz, Markus
  last_name: Betz
citation:
  ama: Mundry J, Spreyer F, Jmerik V, Ivanov S, Zentgraf T, Betz M. Nonlinear metasurface
    combining telecom-range intersubband transitions in GaN/AlN quantum wells with
    resonant plasmonic antenna arrays. <i>Optical Materials Express</i>. 2021;11(7).
    doi:<a href="https://doi.org/10.1364/ome.426236">10.1364/ome.426236</a>
  apa: Mundry, J., Spreyer, F., Jmerik, V., Ivanov, S., Zentgraf, T., &#38; Betz,
    M. (2021). Nonlinear metasurface combining telecom-range intersubband transitions
    in GaN/AlN quantum wells with resonant plasmonic antenna arrays. <i>Optical Materials
    Express</i>, <i>11</i>(7). <a href="https://doi.org/10.1364/ome.426236">https://doi.org/10.1364/ome.426236</a>
  bibtex: '@article{Mundry_Spreyer_Jmerik_Ivanov_Zentgraf_Betz_2021, title={Nonlinear
    metasurface combining telecom-range intersubband transitions in GaN/AlN quantum
    wells with resonant plasmonic antenna arrays}, volume={11}, DOI={<a href="https://doi.org/10.1364/ome.426236">10.1364/ome.426236</a>},
    number={72134}, journal={Optical Materials Express}, publisher={OSA}, author={Mundry,
    Jan and Spreyer, Florian and Jmerik, Valentin and Ivanov, Sergey and Zentgraf,
    Thomas and Betz, Markus}, year={2021} }'
  chicago: Mundry, Jan, Florian Spreyer, Valentin Jmerik, Sergey Ivanov, Thomas Zentgraf,
    and Markus Betz. “Nonlinear Metasurface Combining Telecom-Range Intersubband Transitions
    in GaN/AlN Quantum Wells with Resonant Plasmonic Antenna Arrays.” <i>Optical Materials
    Express</i> 11, no. 7 (2021). <a href="https://doi.org/10.1364/ome.426236">https://doi.org/10.1364/ome.426236</a>.
  ieee: J. Mundry, F. Spreyer, V. Jmerik, S. Ivanov, T. Zentgraf, and M. Betz, “Nonlinear
    metasurface combining telecom-range intersubband transitions in GaN/AlN quantum
    wells with resonant plasmonic antenna arrays,” <i>Optical Materials Express</i>,
    vol. 11, no. 7, 2021.
  mla: Mundry, Jan, et al. “Nonlinear Metasurface Combining Telecom-Range Intersubband
    Transitions in GaN/AlN Quantum Wells with Resonant Plasmonic Antenna Arrays.”
    <i>Optical Materials Express</i>, vol. 11, no. 7, 2134, OSA, 2021, doi:<a href="https://doi.org/10.1364/ome.426236">10.1364/ome.426236</a>.
  short: J. Mundry, F. Spreyer, V. Jmerik, S. Ivanov, T. Zentgraf, M. Betz, Optical
    Materials Express 11 (2021).
date_created: 2021-06-16T05:52:21Z
date_updated: 2022-01-06T06:55:33Z
department:
- _id: '15'
- _id: '230'
- _id: '289'
- _id: '429'
doi: 10.1364/ome.426236
intvolume: '        11'
issue: '7'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://www.osapublishing.org/ome/fulltext.cfm?uri=ome-11-7-2134&id=452008
oa: '1'
project:
- _id: '53'
  name: TRR 142
- _id: '54'
  name: TRR 142 - Project Area A
- _id: '65'
  name: TRR 142 - Subproject A8
publication: Optical Materials Express
publication_identifier:
  issn:
  - 2159-3930
publication_status: published
publisher: OSA
quality_controlled: '1'
status: public
title: Nonlinear metasurface combining telecom-range intersubband transitions in GaN/AlN
  quantum wells with resonant plasmonic antenna arrays
type: journal_article
user_id: '30525'
volume: 11
year: '2021'
...
---
_id: '22533'
article_number: '075013'
author:
- first_name: F.
  full_name: Meier, F.
  last_name: Meier
- first_name: M.
  full_name: Protte, M.
  last_name: Protte
- first_name: E.
  full_name: Baron, E.
  last_name: Baron
- first_name: M.
  full_name: Feneberg, M.
  last_name: Feneberg
- first_name: R.
  full_name: Goldhahn, R.
  last_name: Goldhahn
- first_name: Dirk
  full_name: Reuter, Dirk
  id: '37763'
  last_name: Reuter
- first_name: D. J.
  full_name: As, D. J.
  last_name: As
citation:
  ama: Meier F, Protte M, Baron E, et al. Selective area growth of cubic gallium nitride
    on silicon (001) and 3C-silicon carbide (001). <i>AIP Advances</i>. 2021. doi:<a
    href="https://doi.org/10.1063/5.0053865">10.1063/5.0053865</a>
  apa: Meier, F., Protte, M., Baron, E., Feneberg, M., Goldhahn, R., Reuter, D., &#38;
    As, D. J. (2021). Selective area growth of cubic gallium nitride on silicon (001)
    and 3C-silicon carbide (001). <i>AIP Advances</i>. <a href="https://doi.org/10.1063/5.0053865">https://doi.org/10.1063/5.0053865</a>
  bibtex: '@article{Meier_Protte_Baron_Feneberg_Goldhahn_Reuter_As_2021, title={Selective
    area growth of cubic gallium nitride on silicon (001) and 3C-silicon carbide (001)},
    DOI={<a href="https://doi.org/10.1063/5.0053865">10.1063/5.0053865</a>}, number={075013},
    journal={AIP Advances}, author={Meier, F. and Protte, M. and Baron, E. and Feneberg,
    M. and Goldhahn, R. and Reuter, Dirk and As, D. J.}, year={2021} }'
  chicago: Meier, F., M. Protte, E. Baron, M. Feneberg, R. Goldhahn, Dirk Reuter,
    and D. J. As. “Selective Area Growth of Cubic Gallium Nitride on Silicon (001)
    and 3C-Silicon Carbide (001).” <i>AIP Advances</i>, 2021. <a href="https://doi.org/10.1063/5.0053865">https://doi.org/10.1063/5.0053865</a>.
  ieee: F. Meier <i>et al.</i>, “Selective area growth of cubic gallium nitride on
    silicon (001) and 3C-silicon carbide (001),” <i>AIP Advances</i>, 2021.
  mla: Meier, F., et al. “Selective Area Growth of Cubic Gallium Nitride on Silicon
    (001) and 3C-Silicon Carbide (001).” <i>AIP Advances</i>, 075013, 2021, doi:<a
    href="https://doi.org/10.1063/5.0053865">10.1063/5.0053865</a>.
  short: F. Meier, M. Protte, E. Baron, M. Feneberg, R. Goldhahn, D. Reuter, D.J.
    As, AIP Advances (2021).
date_created: 2021-07-07T07:01:07Z
date_updated: 2022-01-06T06:55:36Z
department:
- _id: '15'
- _id: '230'
doi: 10.1063/5.0053865
language:
- iso: eng
publication: AIP Advances
publication_identifier:
  issn:
  - 2158-3226
publication_status: published
status: public
title: Selective area growth of cubic gallium nitride on silicon (001) and 3C-silicon
  carbide (001)
type: journal_article
user_id: '42514'
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'
...
---
_id: '22640'
author:
- first_name: Petteri
  full_name: Piskunen, Petteri
  last_name: Piskunen
- first_name: Boxuan
  full_name: Shen, Boxuan
  last_name: Shen
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
- first_name: J. Jussi
  full_name: Toppari, J. Jussi
  last_name: Toppari
- first_name: Mauri A.
  full_name: Kostiainen, Mauri A.
  last_name: Kostiainen
- first_name: Veikko
  full_name: Linko, Veikko
  last_name: Linko
citation:
  ama: Piskunen P, Shen B, Keller A, Toppari JJ, Kostiainen MA, Linko V. Biotemplated
    Lithography of Inorganic Nanostructures (BLIN) for Versatile Patterning of Functional
    Materials. <i>ACS Applied Nano Materials</i>. 2021;4:529-538. doi:<a href="https://doi.org/10.1021/acsanm.0c02849">10.1021/acsanm.0c02849</a>
  apa: Piskunen, P., Shen, B., Keller, A., Toppari, J. J., Kostiainen, M. A., &#38;
    Linko, V. (2021). Biotemplated Lithography of Inorganic Nanostructures (BLIN)
    for Versatile Patterning of Functional Materials. <i>ACS Applied Nano Materials</i>,
    <i>4</i>, 529–538. <a href="https://doi.org/10.1021/acsanm.0c02849">https://doi.org/10.1021/acsanm.0c02849</a>
  bibtex: '@article{Piskunen_Shen_Keller_Toppari_Kostiainen_Linko_2021, title={Biotemplated
    Lithography of Inorganic Nanostructures (BLIN) for Versatile Patterning of Functional
    Materials}, volume={4}, DOI={<a href="https://doi.org/10.1021/acsanm.0c02849">10.1021/acsanm.0c02849</a>},
    journal={ACS Applied Nano Materials}, author={Piskunen, Petteri and Shen, Boxuan
    and Keller, Adrian and Toppari, J. Jussi and Kostiainen, Mauri A. and Linko, Veikko},
    year={2021}, pages={529–538} }'
  chicago: 'Piskunen, Petteri, Boxuan Shen, Adrian Keller, J. Jussi Toppari, Mauri
    A. Kostiainen, and Veikko Linko. “Biotemplated Lithography of Inorganic Nanostructures
    (BLIN) for Versatile Patterning of Functional Materials.” <i>ACS Applied Nano
    Materials</i> 4 (2021): 529–38. <a href="https://doi.org/10.1021/acsanm.0c02849">https://doi.org/10.1021/acsanm.0c02849</a>.'
  ieee: P. Piskunen, B. Shen, A. Keller, J. J. Toppari, M. A. Kostiainen, and V. Linko,
    “Biotemplated Lithography of Inorganic Nanostructures (BLIN) for Versatile Patterning
    of Functional Materials,” <i>ACS Applied Nano Materials</i>, vol. 4, pp. 529–538,
    2021.
  mla: Piskunen, Petteri, et al. “Biotemplated Lithography of Inorganic Nanostructures
    (BLIN) for Versatile Patterning of Functional Materials.” <i>ACS Applied Nano
    Materials</i>, vol. 4, 2021, pp. 529–38, doi:<a href="https://doi.org/10.1021/acsanm.0c02849">10.1021/acsanm.0c02849</a>.
  short: P. Piskunen, B. Shen, A. Keller, J.J. Toppari, M.A. Kostiainen, V. Linko,
    ACS Applied Nano Materials 4 (2021) 529–538.
date_created: 2021-07-08T11:51:39Z
date_updated: 2022-01-06T06:55:37Z
department:
- _id: '302'
doi: 10.1021/acsanm.0c02849
intvolume: '         4'
language:
- iso: eng
page: 529-538
publication: ACS Applied Nano Materials
publication_identifier:
  issn:
  - 2574-0970
  - 2574-0970
publication_status: published
status: public
title: Biotemplated Lithography of Inorganic Nanostructures (BLIN) for Versatile Patterning
  of Functional Materials
type: journal_article
user_id: '48864'
volume: 4
year: '2021'
...
---
_id: '22641'
author:
- first_name: DM
  full_name: Smith, DM
  last_name: Smith
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
citation:
  ama: Smith D, Keller A. DNA Nanostructures in the Fight Against Infectious Diseases.
    <i>Advanced NanoBiomed Research</i>. 2021;1:2000049. doi:<a href="https://doi.org/10.1002/anbr.202000049">10.1002/anbr.202000049</a>
  apa: Smith, D., &#38; Keller, A. (2021). DNA Nanostructures in the Fight Against
    Infectious Diseases. <i>Advanced NanoBiomed Research</i>, <i>1</i>, 2000049. <a
    href="https://doi.org/10.1002/anbr.202000049">https://doi.org/10.1002/anbr.202000049</a>
  bibtex: '@article{Smith_Keller_2021, title={DNA Nanostructures in the Fight Against
    Infectious Diseases.}, volume={1}, DOI={<a href="https://doi.org/10.1002/anbr.202000049">10.1002/anbr.202000049</a>},
    journal={Advanced NanoBiomed Research}, author={Smith, DM and Keller, Adrian},
    year={2021}, pages={2000049} }'
  chicago: 'Smith, DM, and Adrian Keller. “DNA Nanostructures in the Fight Against
    Infectious Diseases.” <i>Advanced NanoBiomed Research</i> 1 (2021): 2000049. <a
    href="https://doi.org/10.1002/anbr.202000049">https://doi.org/10.1002/anbr.202000049</a>.'
  ieee: D. Smith and A. Keller, “DNA Nanostructures in the Fight Against Infectious
    Diseases.,” <i>Advanced NanoBiomed Research</i>, vol. 1, p. 2000049, 2021.
  mla: Smith, DM, and Adrian Keller. “DNA Nanostructures in the Fight Against Infectious
    Diseases.” <i>Advanced NanoBiomed Research</i>, vol. 1, 2021, p. 2000049, doi:<a
    href="https://doi.org/10.1002/anbr.202000049">10.1002/anbr.202000049</a>.
  short: D. Smith, A. Keller, Advanced NanoBiomed Research 1 (2021) 2000049.
date_created: 2021-07-08T11:53:25Z
date_updated: 2022-01-06T06:55:37Z
department:
- _id: '302'
doi: 10.1002/anbr.202000049
external_id:
  pmid:
  - '33615315'
intvolume: '         1'
language:
- iso: eng
page: '2000049'
pmid: '1'
publication: Advanced NanoBiomed Research
publication_identifier:
  issn:
  - 2699-9307
status: public
title: DNA Nanostructures in the Fight Against Infectious Diseases.
type: journal_article
user_id: '48864'
volume: 1
year: '2021'
...
---
_id: '22642'
author:
- first_name: Y
  full_name: Xin, Y
  last_name: Xin
- 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: Xin Y, Grundmeier G, Keller A. Adsorption of SARS-CoV-2 Spike Protein S1 at
    Oxide Surfaces Studied by High-Speed Atomic Force Microscopy. <i>Advanced NanoBiomed
    Research</i>. 2021;1(2):2170023. doi:<a href="https://doi.org/10.1002/anbr.202170023">10.1002/anbr.202170023</a>
  apa: Xin, Y., Grundmeier, G., &#38; Keller, A. (2021). Adsorption of SARS-CoV-2
    Spike Protein S1 at Oxide Surfaces Studied by High-Speed Atomic Force Microscopy.
    <i>Advanced NanoBiomed Research</i>, <i>1</i>(2), 2170023. <a href="https://doi.org/10.1002/anbr.202170023">https://doi.org/10.1002/anbr.202170023</a>
  bibtex: '@article{Xin_Grundmeier_Keller_2021, title={Adsorption of SARS-CoV-2 Spike
    Protein S1 at Oxide Surfaces Studied by High-Speed Atomic Force Microscopy.},
    volume={1}, DOI={<a href="https://doi.org/10.1002/anbr.202170023">10.1002/anbr.202170023</a>},
    number={2}, journal={Advanced NanoBiomed Research}, author={Xin, Y and Grundmeier,
    Guido and Keller, Adrian}, year={2021}, pages={2170023} }'
  chicago: 'Xin, Y, Guido Grundmeier, and Adrian Keller. “Adsorption of SARS-CoV-2
    Spike Protein S1 at Oxide Surfaces Studied by High-Speed Atomic Force Microscopy.”
    <i>Advanced NanoBiomed Research</i> 1, no. 2 (2021): 2170023. <a href="https://doi.org/10.1002/anbr.202170023">https://doi.org/10.1002/anbr.202170023</a>.'
  ieee: Y. Xin, G. Grundmeier, and A. Keller, “Adsorption of SARS-CoV-2 Spike Protein
    S1 at Oxide Surfaces Studied by High-Speed Atomic Force Microscopy.,” <i>Advanced
    NanoBiomed Research</i>, vol. 1, no. 2, p. 2170023, 2021.
  mla: Xin, Y., et al. “Adsorption of SARS-CoV-2 Spike Protein S1 at Oxide Surfaces
    Studied by High-Speed Atomic Force Microscopy.” <i>Advanced NanoBiomed Research</i>,
    vol. 1, no. 2, 2021, p. 2170023, doi:<a href="https://doi.org/10.1002/anbr.202170023">10.1002/anbr.202170023</a>.
  short: Y. Xin, G. Grundmeier, A. Keller, Advanced NanoBiomed Research 1 (2021) 2170023.
date_created: 2021-07-08T11:54:36Z
date_updated: 2022-01-06T06:55:37Z
department:
- _id: '302'
doi: 10.1002/anbr.202170023
external_id:
  pmid:
  - '33786537'
intvolume: '         1'
issue: '2'
language:
- iso: eng
page: '2170023'
pmid: '1'
publication: Advanced NanoBiomed Research
publication_identifier:
  issn:
  - 2699-9307
status: public
title: Adsorption of SARS-CoV-2 Spike Protein S1 at Oxide Surfaces Studied by High-Speed
  Atomic Force Microscopy.
type: journal_article
user_id: '48864'
volume: 1
year: '2021'
...
---
_id: '22643'
author:
- first_name: Yu
  full_name: Yang, Yu
  last_name: Yang
- first_name: Mingrui
  full_name: Yu, Mingrui
  last_name: Yu
- first_name: Frederik
  full_name: Böke, Frederik
  last_name: Böke
- first_name: Qin
  full_name: Qin, Qin
  last_name: Qin
- first_name: René
  full_name: Hübner, René
  last_name: Hübner
- first_name: Steffen
  full_name: Knust, Steffen
  last_name: Knust
- first_name: Sabrina
  full_name: Schwiderek, Sabrina
  last_name: Schwiderek
- first_name: Guido
  full_name: Grundmeier, Guido
  id: '194'
  last_name: Grundmeier
- first_name: Horst
  full_name: Fischer, Horst
  last_name: Fischer
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
citation:
  ama: Yang Y, Yu M, Böke F, et al. Effect of nanoscale surface topography on the
    adsorption of globular proteins. <i>Applied Surface Science</i>. 2021;535:147671.
    doi:<a href="https://doi.org/10.1016/j.apsusc.2020.147671">10.1016/j.apsusc.2020.147671</a>
  apa: Yang, Y., Yu, M., Böke, F., Qin, Q., Hübner, R., Knust, S., … Keller, A. (2021).
    Effect of nanoscale surface topography on the adsorption of globular proteins.
    <i>Applied Surface Science</i>, <i>535</i>, 147671. <a href="https://doi.org/10.1016/j.apsusc.2020.147671">https://doi.org/10.1016/j.apsusc.2020.147671</a>
  bibtex: '@article{Yang_Yu_Böke_Qin_Hübner_Knust_Schwiderek_Grundmeier_Fischer_Keller_2021,
    title={Effect of nanoscale surface topography on the adsorption of globular proteins},
    volume={535}, DOI={<a href="https://doi.org/10.1016/j.apsusc.2020.147671">10.1016/j.apsusc.2020.147671</a>},
    journal={Applied Surface Science}, author={Yang, Yu and Yu, Mingrui and Böke,
    Frederik and Qin, Qin and Hübner, René and Knust, Steffen and Schwiderek, Sabrina
    and Grundmeier, Guido and Fischer, Horst and Keller, Adrian}, year={2021}, pages={147671}
    }'
  chicago: 'Yang, Yu, Mingrui Yu, Frederik Böke, Qin Qin, René Hübner, Steffen Knust,
    Sabrina Schwiderek, Guido Grundmeier, Horst Fischer, and Adrian Keller. “Effect
    of Nanoscale Surface Topography on the Adsorption of Globular Proteins.” <i>Applied
    Surface Science</i> 535 (2021): 147671. <a href="https://doi.org/10.1016/j.apsusc.2020.147671">https://doi.org/10.1016/j.apsusc.2020.147671</a>.'
  ieee: Y. Yang <i>et al.</i>, “Effect of nanoscale surface topography on the adsorption
    of globular proteins,” <i>Applied Surface Science</i>, vol. 535, p. 147671, 2021.
  mla: Yang, Yu, et al. “Effect of Nanoscale Surface Topography on the Adsorption
    of Globular Proteins.” <i>Applied Surface Science</i>, vol. 535, 2021, p. 147671,
    doi:<a href="https://doi.org/10.1016/j.apsusc.2020.147671">10.1016/j.apsusc.2020.147671</a>.
  short: Y. Yang, M. Yu, F. Böke, Q. Qin, R. Hübner, S. Knust, S. Schwiderek, G. Grundmeier,
    H. Fischer, A. Keller, Applied Surface Science 535 (2021) 147671.
date_created: 2021-07-08T11:57:33Z
date_updated: 2022-01-06T06:55:37Z
department:
- _id: '302'
doi: 10.1016/j.apsusc.2020.147671
intvolume: '       535'
language:
- iso: eng
page: '147671'
publication: Applied Surface Science
publication_identifier:
  issn:
  - 0169-4332
publication_status: published
status: public
title: Effect of nanoscale surface topography on the adsorption of globular proteins
type: journal_article
user_id: '48864'
volume: 535
year: '2021'
...
---
_id: '22688'
article_number: '102812'
author:
- first_name: Dennis
  full_name: Meinderink, Dennis
  id: '32378'
  last_name: Meinderink
  orcid: 0000-0002-2755-6514
- first_name: C.
  full_name: Kielar, C.
  last_name: Kielar
- first_name: O.
  full_name: Sobol, O.
  last_name: Sobol
- first_name: L.
  full_name: Ruhm, L.
  last_name: Ruhm
- first_name: F.
  full_name: Rieker, F.
  last_name: Rieker
- first_name: K.
  full_name: Nolkemper, K.
  last_name: Nolkemper
- first_name: A.G.
  full_name: Orive, A.G.
  last_name: Orive
- first_name: O.
  full_name: Ozcan, O.
  last_name: Ozcan
- first_name: Guido
  full_name: Grundmeier, Guido
  id: '194'
  last_name: Grundmeier
citation:
  ama: Meinderink D, Kielar C, Sobol O, et al. Effect of PAA-induced surface etching
    on the adhesion properties of ZnO nanostructured films. <i>International Journal
    of Adhesion and Adhesives</i>. 2021. doi:<a href="https://doi.org/10.1016/j.ijadhadh.2021.102812">10.1016/j.ijadhadh.2021.102812</a>
  apa: Meinderink, D., Kielar, C., Sobol, O., Ruhm, L., Rieker, F., Nolkemper, K.,
    … Grundmeier, G. (2021). Effect of PAA-induced surface etching on the adhesion
    properties of ZnO nanostructured films. <i>International Journal of Adhesion and
    Adhesives</i>. <a href="https://doi.org/10.1016/j.ijadhadh.2021.102812">https://doi.org/10.1016/j.ijadhadh.2021.102812</a>
  bibtex: '@article{Meinderink_Kielar_Sobol_Ruhm_Rieker_Nolkemper_Orive_Ozcan_Grundmeier_2021,
    title={Effect of PAA-induced surface etching on the adhesion properties of ZnO
    nanostructured films}, DOI={<a href="https://doi.org/10.1016/j.ijadhadh.2021.102812">10.1016/j.ijadhadh.2021.102812</a>},
    number={102812}, journal={International Journal of Adhesion and Adhesives}, author={Meinderink,
    Dennis and Kielar, C. and Sobol, O. and Ruhm, L. and Rieker, F. and Nolkemper,
    K. and Orive, A.G. and Ozcan, O. and Grundmeier, Guido}, year={2021} }'
  chicago: Meinderink, Dennis, C. Kielar, O. Sobol, L. Ruhm, F. Rieker, K. Nolkemper,
    A.G. Orive, O. Ozcan, and Guido Grundmeier. “Effect of PAA-Induced Surface Etching
    on the Adhesion Properties of ZnO Nanostructured Films.” <i>International Journal
    of Adhesion and Adhesives</i>, 2021. <a href="https://doi.org/10.1016/j.ijadhadh.2021.102812">https://doi.org/10.1016/j.ijadhadh.2021.102812</a>.
  ieee: D. Meinderink <i>et al.</i>, “Effect of PAA-induced surface etching on the
    adhesion properties of ZnO nanostructured films,” <i>International Journal of
    Adhesion and Adhesives</i>, 2021.
  mla: Meinderink, Dennis, et al. “Effect of PAA-Induced Surface Etching on the Adhesion
    Properties of ZnO Nanostructured Films.” <i>International Journal of Adhesion
    and Adhesives</i>, 102812, 2021, doi:<a href="https://doi.org/10.1016/j.ijadhadh.2021.102812">10.1016/j.ijadhadh.2021.102812</a>.
  short: D. Meinderink, C. Kielar, O. Sobol, L. Ruhm, F. Rieker, K. Nolkemper, A.G.
    Orive, O. Ozcan, G. Grundmeier, International Journal of Adhesion and Adhesives
    (2021).
date_created: 2021-07-09T12:14:26Z
date_updated: 2022-01-06T06:55:38Z
department:
- _id: '302'
doi: 10.1016/j.ijadhadh.2021.102812
language:
- iso: eng
publication: International Journal of Adhesion and Adhesives
publication_identifier:
  issn:
  - 0143-7496
publication_status: published
status: public
title: Effect of PAA-induced surface etching on the adhesion properties of ZnO nanostructured
  films
type: journal_article
user_id: '32378'
year: '2021'
...
---
_id: '22697'
author:
- first_name: Steffen
  full_name: Knust, Steffen
  last_name: Knust
- first_name: Lukas
  full_name: Ruhm, Lukas
  last_name: Ruhm
- first_name: Andreas
  full_name: Kuhlmann, Andreas
  last_name: Kuhlmann
- first_name: Dennis
  full_name: Meinderink, Dennis
  id: '32378'
  last_name: Meinderink
  orcid: 0000-0002-2755-6514
- first_name: Julius
  full_name: Bürger, Julius
  id: '46952'
  last_name: Bürger
- first_name: Jörg K. N.
  full_name: Lindner, Jörg K. N.
  last_name: Lindner
- first_name: Maria Teresa
  full_name: Arcos de Pedro, Maria Teresa
  last_name: Arcos de Pedro
- first_name: Guido
  full_name: Grundmeier, Guido
  id: '194'
  last_name: Grundmeier
citation:
  ama: Knust S, Ruhm L, Kuhlmann A, et al. In situ backside Raman spectroscopy of
    zinc oxide nanorods in an atmospheric‐pressure dielectric barrier discharge plasma.
    <i>Journal of Raman Spectroscopy</i>. 2021:1237-1245. doi:<a href="https://doi.org/10.1002/jrs.6123">10.1002/jrs.6123</a>
  apa: Knust, S., Ruhm, L., Kuhlmann, A., Meinderink, D., Bürger, J., Lindner, J.
    K. N., … Grundmeier, G. (2021). In situ backside Raman spectroscopy of zinc oxide
    nanorods in an atmospheric‐pressure dielectric barrier discharge plasma. <i>Journal
    of Raman Spectroscopy</i>, 1237–1245. <a href="https://doi.org/10.1002/jrs.6123">https://doi.org/10.1002/jrs.6123</a>
  bibtex: '@article{Knust_Ruhm_Kuhlmann_Meinderink_Bürger_Lindner_Arcos de Pedro_Grundmeier_2021,
    title={In situ backside Raman spectroscopy of zinc oxide nanorods in an atmospheric‐pressure
    dielectric barrier discharge plasma}, DOI={<a href="https://doi.org/10.1002/jrs.6123">10.1002/jrs.6123</a>},
    journal={Journal of Raman Spectroscopy}, author={Knust, Steffen and Ruhm, Lukas
    and Kuhlmann, Andreas and Meinderink, Dennis and Bürger, Julius and Lindner, Jörg
    K. N. and Arcos de Pedro, Maria Teresa and Grundmeier, Guido}, year={2021}, pages={1237–1245}
    }'
  chicago: Knust, Steffen, Lukas Ruhm, Andreas Kuhlmann, Dennis Meinderink, Julius
    Bürger, Jörg K. N. Lindner, Maria Teresa Arcos de Pedro, and Guido Grundmeier.
    “In Situ Backside Raman Spectroscopy of Zinc Oxide Nanorods in an Atmospheric‐pressure
    Dielectric Barrier Discharge Plasma.” <i>Journal of Raman Spectroscopy</i>, 2021,
    1237–45. <a href="https://doi.org/10.1002/jrs.6123">https://doi.org/10.1002/jrs.6123</a>.
  ieee: S. Knust <i>et al.</i>, “In situ backside Raman spectroscopy of zinc oxide
    nanorods in an atmospheric‐pressure dielectric barrier discharge plasma,” <i>Journal
    of Raman Spectroscopy</i>, pp. 1237–1245, 2021.
  mla: Knust, Steffen, et al. “In Situ Backside Raman Spectroscopy of Zinc Oxide Nanorods
    in an Atmospheric‐pressure Dielectric Barrier Discharge Plasma.” <i>Journal of
    Raman Spectroscopy</i>, 2021, pp. 1237–45, doi:<a href="https://doi.org/10.1002/jrs.6123">10.1002/jrs.6123</a>.
  short: S. Knust, L. Ruhm, A. Kuhlmann, D. Meinderink, J. Bürger, J.K.N. Lindner,
    M.T. Arcos de Pedro, G. Grundmeier, Journal of Raman Spectroscopy (2021) 1237–1245.
date_created: 2021-07-09T12:31:06Z
date_updated: 2022-01-06T06:55:38Z
department:
- _id: '302'
doi: 10.1002/jrs.6123
language:
- iso: eng
page: 1237-1245
publication: Journal of Raman Spectroscopy
publication_identifier:
  issn:
  - 0377-0486
  - 1097-4555
publication_status: published
status: public
title: In situ backside Raman spectroscopy of zinc oxide nanorods in an atmospheric‐pressure
  dielectric barrier discharge plasma
type: journal_article
user_id: '32378'
year: '2021'
...
---
_id: '22723'
article_number: '383002'
article_type: review
author:
- first_name: Gwanho
  full_name: Yoon, Gwanho
  last_name: Yoon
- first_name: Takuo
  full_name: Tanaka, Takuo
  last_name: Tanaka
- first_name: Thomas
  full_name: Zentgraf, Thomas
  id: '30525'
  last_name: Zentgraf
  orcid: 0000-0002-8662-1101
- first_name: Junsuk
  full_name: Rho, Junsuk
  last_name: Rho
citation:
  ama: 'Yoon G, Tanaka T, Zentgraf T, Rho J. Recent progress on metasurfaces: applications
    and fabrication. <i>Journal of Physics D: Applied Physics</i>. 2021;54. doi:<a
    href="https://doi.org/10.1088/1361-6463/ac0faa">10.1088/1361-6463/ac0faa</a>'
  apa: 'Yoon, G., Tanaka, T., Zentgraf, T., &#38; Rho, J. (2021). Recent progress
    on metasurfaces: applications and fabrication. <i>Journal of Physics D: Applied
    Physics</i>, <i>54</i>. <a href="https://doi.org/10.1088/1361-6463/ac0faa">https://doi.org/10.1088/1361-6463/ac0faa</a>'
  bibtex: '@article{Yoon_Tanaka_Zentgraf_Rho_2021, title={Recent progress on metasurfaces:
    applications and fabrication}, volume={54}, DOI={<a href="https://doi.org/10.1088/1361-6463/ac0faa">10.1088/1361-6463/ac0faa</a>},
    number={383002}, journal={Journal of Physics D: Applied Physics}, author={Yoon,
    Gwanho and Tanaka, Takuo and Zentgraf, Thomas and Rho, Junsuk}, year={2021} }'
  chicago: 'Yoon, Gwanho, Takuo Tanaka, Thomas Zentgraf, and Junsuk Rho. “Recent Progress
    on Metasurfaces: Applications and Fabrication.” <i>Journal of Physics D: Applied
    Physics</i> 54 (2021). <a href="https://doi.org/10.1088/1361-6463/ac0faa">https://doi.org/10.1088/1361-6463/ac0faa</a>.'
  ieee: 'G. Yoon, T. Tanaka, T. Zentgraf, and J. Rho, “Recent progress on metasurfaces:
    applications and fabrication,” <i>Journal of Physics D: Applied Physics</i>, vol.
    54, 2021.'
  mla: 'Yoon, Gwanho, et al. “Recent Progress on Metasurfaces: Applications and Fabrication.”
    <i>Journal of Physics D: Applied Physics</i>, vol. 54, 383002, 2021, doi:<a href="https://doi.org/10.1088/1361-6463/ac0faa">10.1088/1361-6463/ac0faa</a>.'
  short: 'G. Yoon, T. Tanaka, T. Zentgraf, J. Rho, Journal of Physics D: Applied Physics
    54 (2021).'
date_created: 2021-07-14T06:21:07Z
date_updated: 2022-01-06T06:55:39Z
department:
- _id: '15'
- _id: '230'
- _id: '289'
doi: 10.1088/1361-6463/ac0faa
intvolume: '        54'
language:
- iso: eng
main_file_link:
- url: https://iopscience.iop.org/article/10.1088/1361-6463/ac0faa
publication: 'Journal of Physics D: Applied Physics'
publication_identifier:
  issn:
  - 0022-3727
  - 1361-6463
publication_status: published
quality_controlled: '1'
status: public
title: 'Recent progress on metasurfaces: applications and fabrication'
type: journal_article
user_id: '30525'
volume: 54
year: '2021'
...
---
_id: '22773'
abstract:
- lang: eng
  text: <jats:p>Ion beam irradiation of solid surfaces may result in the self-organized
    formation of well-defined topographic nanopatterns. Depending on the irradiation
    conditions and the material properties, isotropic or anisotropic patterns of differently
    shaped features may be obtained. Most intriguingly, the periodicities of these
    patterns can be adjusted in the range between less than twenty and several hundred
    nanometers, which covers the dimensions of many cellular and extracellular features.
    However, even though ion beam nanopatterning has been studied for several decades
    and is nowadays widely employed in the fabrication of functional surfaces, it
    has found its way into the biomaterials field only recently. This review provides
    a brief overview of the basics of ion beam nanopatterning, emphasizes aspects
    of particular relevance for biomaterials applications, and summarizes a number
    of recent studies that investigated the effects of such nanopatterned surfaces
    on the adsorption of biomolecules and the response of adhering cells. Finally,
    promising future directions and potential translational challenges are identified.</jats:p>
author:
- first_name: Yu
  full_name: Yang, Yu
  last_name: Yang
- first_name: Adrian
  full_name: Keller, Adrian
  id: '48864'
  last_name: Keller
  orcid: 0000-0001-7139-3110
citation:
  ama: Yang Y, Keller A. Ion Beam Nanopatterning of Biomaterial Surfaces. <i>Applied
    Sciences</i>. 2021;11:6575. doi:<a href="https://doi.org/10.3390/app11146575">10.3390/app11146575</a>
  apa: Yang, Y., &#38; Keller, A. (2021). Ion Beam Nanopatterning of Biomaterial Surfaces.
    <i>Applied Sciences</i>, <i>11</i>, 6575. <a href="https://doi.org/10.3390/app11146575">https://doi.org/10.3390/app11146575</a>
  bibtex: '@article{Yang_Keller_2021, title={Ion Beam Nanopatterning of Biomaterial
    Surfaces}, volume={11}, DOI={<a href="https://doi.org/10.3390/app11146575">10.3390/app11146575</a>},
    journal={Applied Sciences}, author={Yang, Yu and Keller, Adrian}, year={2021},
    pages={6575} }'
  chicago: 'Yang, Yu, and Adrian Keller. “Ion Beam Nanopatterning of Biomaterial Surfaces.”
    <i>Applied Sciences</i> 11 (2021): 6575. <a href="https://doi.org/10.3390/app11146575">https://doi.org/10.3390/app11146575</a>.'
  ieee: Y. Yang and A. Keller, “Ion Beam Nanopatterning of Biomaterial Surfaces,”
    <i>Applied Sciences</i>, vol. 11, p. 6575, 2021.
  mla: Yang, Yu, and Adrian Keller. “Ion Beam Nanopatterning of Biomaterial Surfaces.”
    <i>Applied Sciences</i>, vol. 11, 2021, p. 6575, doi:<a href="https://doi.org/10.3390/app11146575">10.3390/app11146575</a>.
  short: Y. Yang, A. Keller, Applied Sciences 11 (2021) 6575.
date_created: 2021-07-21T09:25:55Z
date_updated: 2022-01-06T06:55:40Z
department:
- _id: '302'
doi: 10.3390/app11146575
intvolume: '        11'
language:
- iso: eng
page: '6575'
publication: Applied Sciences
publication_identifier:
  issn:
  - 2076-3417
publication_status: published
status: public
title: Ion Beam Nanopatterning of Biomaterial Surfaces
type: journal_article
user_id: '48864'
volume: 11
year: '2021'
...
---
_id: '22807'
abstract:
- lang: eng
  text: "Photonic quantum technologies [1] with applications in quantum\r\ncommunication,
    sensing as well as quantum simulation and computing, are on the\r\nverge of becoming
    commercially available. One crucial building block are\r\ntailored nanoscale integratable
    quantum light sources, matching the specific\r\nneeds of use-cases. Several different
    approaches to realize solid-state quantum\r\nemitters [2] with high performance
    [3] have been pursued. However, the\r\nproperties of the emitted single photons
    are always defined by the individual\r\nquantum light source and despite numerous
    quantum emitter tuning\r\ntechniques [4-7], scalability is still a major challenge.
    Here we show an\r\nemitter-independent method to tailor and control the properties
    of the single\r\nphoton emission. We demonstrate a laser-controlled down-conversion
    process from\r\nan excited state of a quantum three-level system [8]. Starting
    from a biexciton\r\nstate, a tunable control laser field defines a virtual state
    in a stimulated\r\nprocess. From there, spontaneous emission to the ground state
    leads to\r\noptically controlled single photon emission. Based on this concept,
    we\r\ndemonstrate energy tuning of the single photon emission with a control laser\r\nfield.
    The nature of the involved quantum states furthermore provides a unique\r\nbasis
    for the future control of polarization and bandwidth, as predicted by\r\ntheory
    [9,10]. Our demonstration marks an important step towards tailored\r\nsingle photon
    emission from a photonic quantum system based on quantum optical\r\nprinciples."
author:
- first_name: B.
  full_name: Jonas, B.
  last_name: Jonas
- first_name: D.
  full_name: Heinze, D.
  last_name: Heinze
- first_name: E.
  full_name: Schöll, E.
  last_name: Schöll
- first_name: P.
  full_name: Kallert, P.
  last_name: Kallert
- first_name: T.
  full_name: Langer, T.
  last_name: Langer
- first_name: S.
  full_name: Krehs, S.
  last_name: Krehs
- first_name: A.
  full_name: Widhalm, A.
  last_name: Widhalm
- first_name: K. D.
  full_name: Jöns, K. D.
  last_name: Jöns
- first_name: D.
  full_name: Reuter, D.
  last_name: Reuter
- first_name: S.
  full_name: Schumacher, S.
  last_name: Schumacher
- first_name: Artur
  full_name: Zrenner, Artur
  id: '606'
  last_name: Zrenner
  orcid: 0000-0002-5190-0944
citation:
  ama: Jonas B, Heinze D, Schöll E, et al. Nonlinear down-conversion in a single quantum
    dot. <i>arXiv:210512393</i>. 2021.
  apa: Jonas, B., Heinze, D., Schöll, E., Kallert, P., Langer, T., Krehs, S., … Zrenner,
    A. (2021). Nonlinear down-conversion in a single quantum dot. <i>ArXiv:2105.12393</i>.
  bibtex: '@article{Jonas_Heinze_Schöll_Kallert_Langer_Krehs_Widhalm_Jöns_Reuter_Schumacher_et
    al._2021, title={Nonlinear down-conversion in a single quantum dot}, journal={arXiv:2105.12393},
    author={Jonas, B. and Heinze, D. and Schöll, E. and Kallert, P. and Langer, T.
    and Krehs, S. and Widhalm, A. and Jöns, K. D. and Reuter, D. and Schumacher, S.
    and et al.}, year={2021} }'
  chicago: Jonas, B., D. Heinze, E. Schöll, P. Kallert, T. Langer, S. Krehs, A. Widhalm,
    et al. “Nonlinear Down-Conversion in a Single Quantum Dot.” <i>ArXiv:2105.12393</i>,
    2021.
  ieee: B. Jonas <i>et al.</i>, “Nonlinear down-conversion in a single quantum dot,”
    <i>arXiv:2105.12393</i>. 2021.
  mla: Jonas, B., et al. “Nonlinear Down-Conversion in a Single Quantum Dot.” <i>ArXiv:2105.12393</i>,
    2021.
  short: B. Jonas, D. Heinze, E. Schöll, P. Kallert, T. Langer, S. Krehs, A. Widhalm,
    K.D. Jöns, D. Reuter, S. Schumacher, A. Zrenner, ArXiv:2105.12393 (2021).
date_created: 2021-07-25T12:45:25Z
date_updated: 2022-01-06T06:55:42Z
ddc:
- '530'
department:
- _id: '15'
- _id: '230'
file:
- access_level: closed
  content_type: application/pdf
  creator: zrenner
  date_created: 2021-07-25T12:46:24Z
  date_updated: 2021-07-25T12:46:24Z
  file_id: '22808'
  file_name: 2105.12393.pdf
  file_size: 1786455
  relation: main_file
  success: 1
file_date_updated: 2021-07-25T12:46:24Z
has_accepted_license: '1'
language:
- iso: eng
publication: arXiv:2105.12393
status: public
title: Nonlinear down-conversion in a single quantum dot
type: preprint
user_id: '606'
year: '2021'
...
