[{"_id":"65270","language":[{"iso":"eng"}],"main_file_link":[{"open_access":"1","url":"https://www.sciencedirect.com/science/article/pii/S0169433226009591?via%3Dihub"}],"page":"166755","doi":"https://doi.org/10.1016/j.apsusc.2026.166755","user_id":"11848","publication_identifier":{"issn":["0169-4332"]},"author":[{"full_name":"Qudsia, Syeda","first_name":"Syeda","last_name":"Qudsia"},{"last_name":"Weiss","first_name":"Alexander","full_name":"Weiss, Alexander"},{"last_name":"Sirkiä","first_name":"Saara","full_name":"Sirkiä, Saara"},{"first_name":"Fuzeng","last_name":"Wang","full_name":"Wang, Fuzeng"},{"last_name":"Rosqvist","first_name":"Emil","full_name":"Rosqvist, Emil"},{"last_name":"Los Arcos","first_name":"Teresa De","full_name":"Los Arcos, Teresa De"},{"full_name":"Weinberger, Christian","last_name":"Weinberger","first_name":"Christian","id":"11848"},{"first_name":"Janne","last_name":"Halme","full_name":"Halme, Janne"},{"last_name":"Kemell","first_name":"Marianna","full_name":"Kemell, Marianna"},{"first_name":"Jan-Henrik","last_name":"Smått","full_name":"Smått, Jan-Henrik"}],"status":"public","title":"Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance","year":"2026","article_type":"original","date_updated":"2026-04-07T13:37:22Z","date_created":"2026-04-01T08:39:55Z","oa":"1","type":"journal_article","keyword":["Titanium dioxide","Atomic layer deposition","Electron transport layer","Perovskite solar cells"],"citation":{"chicago":"Qudsia, Syeda, Alexander Weiss, Saara Sirkiä, Fuzeng Wang, Emil Rosqvist, Teresa De Los Arcos, Christian Weinberger, Janne Halme, Marianna Kemell, and Jan-Henrik Smått. “Influence of Deposition Temperature and Thickness of ALD-TiO2 on Planar Perovskite Solar Cell Performance.” <i>Applied Surface Science</i>, 2026, 166755. <a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">https://doi.org/10.1016/j.apsusc.2026.166755</a>.","short":"S. Qudsia, A. Weiss, S. Sirkiä, F. Wang, E. Rosqvist, T.D. Los Arcos, C. Weinberger, J. Halme, M. Kemell, J.-H. Smått, Applied Surface Science (2026) 166755.","ieee":"S. Qudsia <i>et al.</i>, “Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance,” <i>Applied Surface Science</i>, p. 166755, 2026, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">https://doi.org/10.1016/j.apsusc.2026.166755</a>.","apa":"Qudsia, S., Weiss, A., Sirkiä, S., Wang, F., Rosqvist, E., Los Arcos, T. D., Weinberger, C., Halme, J., Kemell, M., &#38; Smått, J.-H. (2026). Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance. <i>Applied Surface Science</i>, 166755. <a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">https://doi.org/10.1016/j.apsusc.2026.166755</a>","bibtex":"@article{Qudsia_Weiss_Sirkiä_Wang_Rosqvist_Los Arcos_Weinberger_Halme_Kemell_Smått_2026, title={Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">https://doi.org/10.1016/j.apsusc.2026.166755</a>}, journal={Applied Surface Science}, author={Qudsia, Syeda and Weiss, Alexander and Sirkiä, Saara and Wang, Fuzeng and Rosqvist, Emil and Los Arcos, Teresa De and Weinberger, Christian and Halme, Janne and Kemell, Marianna and Smått, Jan-Henrik}, year={2026}, pages={166755} }","ama":"Qudsia S, Weiss A, Sirkiä S, et al. Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance. <i>Applied Surface Science</i>. Published online 2026:166755. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">https://doi.org/10.1016/j.apsusc.2026.166755</a>","mla":"Qudsia, Syeda, et al. “Influence of Deposition Temperature and Thickness of ALD-TiO2 on Planar Perovskite Solar Cell Performance.” <i>Applied Surface Science</i>, 2026, p. 166755, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">https://doi.org/10.1016/j.apsusc.2026.166755</a>."},"publication":"Applied Surface Science","abstract":[{"text":"In perovskite solar cells (PSCs), electron transport layers (ETLs) play an important role in the selection and transport of electrons. Understanding the properties of these layers in relation to device performance is essential for optimizing solar cell efficiency and enabling their integration into emerging architectures, such as flexible solar cells. Here, we deposited TiO2 at different thicknesses using atomic layer deposition (ALD), a technique well-suited for producing uniform and pinhole-free films. The crystal structure of the layers was controlled by depositing the films at three different temperatures: 150 °C, 250 °C, and 350 °C. The layers were characterized in detail to determine the morphology (by atomic force microscopy), surface composition (by X-ray photoelectron spectroscopy) and the crystal structure (by X-ray diffraction). The TiO2 layers were then incorporated as ETLs in planar perovskite solar cells to evaluate their influence on device performance. Higher deposition temperatures led to improvements in device fill factor and open-circuit voltage, leading to more efficient solar cells. Notably, the best device performance for the ALD-TiO2 layers was achieved with films deposited at 250 °C.","lang":"eng"}]},{"date_created":"2026-06-25T12:17:25Z","type":"journal_article","department":[{"_id":"302"}],"publication":"Applied Surface Science","citation":{"bibtex":"@article{Qudsia_Weiss_Sirkiä_Wang_Rosqvist_de los Arcos de Pedro_Weinberger_Halme_Kemell_Smått_2026, title={Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance}, volume={736}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">10.1016/j.apsusc.2026.166755</a>}, number={166755}, journal={Applied Surface Science}, publisher={Elsevier BV}, author={Qudsia, Syeda and Weiss, Alexander and Sirkiä, Saara and Wang, Fuzeng and Rosqvist, Emil and de los Arcos de Pedro, Maria Teresa and Weinberger, Christian and Halme, Janne and Kemell, Marianna and Smått, Jan-Henrik}, year={2026} }","ama":"Qudsia S, Weiss A, Sirkiä S, et al. Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance. <i>Applied Surface Science</i>. 2026;736. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">10.1016/j.apsusc.2026.166755</a>","mla":"Qudsia, Syeda, et al. “Influence of Deposition Temperature and Thickness of ALD-TiO2 on Planar Perovskite Solar Cell Performance.” <i>Applied Surface Science</i>, vol. 736, 166755, Elsevier BV, 2026, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">10.1016/j.apsusc.2026.166755</a>.","chicago":"Qudsia, Syeda, Alexander Weiss, Saara Sirkiä, Fuzeng Wang, Emil Rosqvist, Maria Teresa de los Arcos de Pedro, Christian Weinberger, Janne Halme, Marianna Kemell, and Jan-Henrik Smått. “Influence of Deposition Temperature and Thickness of ALD-TiO2 on Planar Perovskite Solar Cell Performance.” <i>Applied Surface Science</i> 736 (2026). <a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">https://doi.org/10.1016/j.apsusc.2026.166755</a>.","short":"S. Qudsia, A. Weiss, S. Sirkiä, F. Wang, E. Rosqvist, M.T. de los Arcos de Pedro, C. Weinberger, J. Halme, M. Kemell, J.-H. Smått, Applied Surface Science 736 (2026).","ieee":"S. Qudsia <i>et al.</i>, “Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance,” <i>Applied Surface Science</i>, vol. 736, Art. no. 166755, 2026, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">10.1016/j.apsusc.2026.166755</a>.","apa":"Qudsia, S., Weiss, A., Sirkiä, S., Wang, F., Rosqvist, E., de los Arcos de Pedro, M. T., Weinberger, C., Halme, J., Kemell, M., &#38; Smått, J.-H. (2026). Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance. <i>Applied Surface Science</i>, <i>736</i>, Article 166755. <a href=\"https://doi.org/10.1016/j.apsusc.2026.166755\">https://doi.org/10.1016/j.apsusc.2026.166755</a>"},"article_number":"166755","language":[{"iso":"eng"}],"_id":"66042","publisher":"Elsevier BV","user_id":"54556","doi":"10.1016/j.apsusc.2026.166755","volume":736,"year":"2026","status":"public","title":"Influence of deposition temperature and thickness of ALD-TiO2 on planar perovskite solar cell performance","author":[{"first_name":"Syeda","last_name":"Qudsia","full_name":"Qudsia, Syeda"},{"full_name":"Weiss, Alexander","first_name":"Alexander","last_name":"Weiss"},{"first_name":"Saara","last_name":"Sirkiä","full_name":"Sirkiä, Saara"},{"last_name":"Wang","first_name":"Fuzeng","full_name":"Wang, Fuzeng"},{"full_name":"Rosqvist, Emil","last_name":"Rosqvist","first_name":"Emil"},{"id":"54556","last_name":"de los Arcos de Pedro","orcid":"0000-0002-8684-273X ","first_name":"Maria Teresa","full_name":"de los Arcos de Pedro, Maria Teresa"},{"last_name":"Weinberger","first_name":"Christian","full_name":"Weinberger, Christian"},{"first_name":"Janne","last_name":"Halme","full_name":"Halme, Janne"},{"full_name":"Kemell, Marianna","last_name":"Kemell","first_name":"Marianna"},{"last_name":"Smått","first_name":"Jan-Henrik","full_name":"Smått, Jan-Henrik"}],"publication_identifier":{"issn":["0169-4332"]},"publication_status":"published","date_updated":"2026-06-25T12:18:05Z","intvolume":"       736"},{"date_created":"2025-12-04T07:36:22Z","department":[{"_id":"302"}],"type":"journal_article","citation":{"ama":"Ruhm L, Löseke J, Vieth P, Prüßner T, Grundmeier G. Adhesion promotion and corrosion resistance of mixed phosphonic acid monolayers on AA 2024. <i>Applied Surface Science</i>. 2024;670. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2024.160655\">10.1016/j.apsusc.2024.160655</a>","bibtex":"@article{Ruhm_Löseke_Vieth_Prüßner_Grundmeier_2024, title={Adhesion promotion and corrosion resistance of mixed phosphonic acid monolayers on AA 2024}, volume={670}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2024.160655\">10.1016/j.apsusc.2024.160655</a>}, number={160655}, journal={Applied Surface Science}, publisher={Elsevier BV}, author={Ruhm, Lukas and Löseke, Jannik and Vieth, Pascal and Prüßner, Tim and Grundmeier, Guido}, year={2024} }","mla":"Ruhm, Lukas, et al. “Adhesion Promotion and Corrosion Resistance of Mixed Phosphonic Acid Monolayers on AA 2024.” <i>Applied Surface Science</i>, vol. 670, 160655, Elsevier BV, 2024, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2024.160655\">10.1016/j.apsusc.2024.160655</a>.","chicago":"Ruhm, Lukas, Jannik Löseke, Pascal Vieth, Tim Prüßner, and Guido Grundmeier. “Adhesion Promotion and Corrosion Resistance of Mixed Phosphonic Acid Monolayers on AA 2024.” <i>Applied Surface Science</i> 670 (2024). <a href=\"https://doi.org/10.1016/j.apsusc.2024.160655\">https://doi.org/10.1016/j.apsusc.2024.160655</a>.","short":"L. Ruhm, J. Löseke, P. Vieth, T. Prüßner, G. Grundmeier, Applied Surface Science 670 (2024).","apa":"Ruhm, L., Löseke, J., Vieth, P., Prüßner, T., &#38; Grundmeier, G. (2024). Adhesion promotion and corrosion resistance of mixed phosphonic acid monolayers on AA 2024. <i>Applied Surface Science</i>, <i>670</i>, Article 160655. <a href=\"https://doi.org/10.1016/j.apsusc.2024.160655\">https://doi.org/10.1016/j.apsusc.2024.160655</a>","ieee":"L. Ruhm, J. Löseke, P. Vieth, T. Prüßner, and G. Grundmeier, “Adhesion promotion and corrosion resistance of mixed phosphonic acid monolayers on AA 2024,” <i>Applied Surface Science</i>, vol. 670, Art. no. 160655, 2024, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2024.160655\">10.1016/j.apsusc.2024.160655</a>."},"publication":"Applied Surface Science","publisher":"Elsevier BV","_id":"62828","language":[{"iso":"eng"}],"article_number":"160655","volume":670,"user_id":"48864","doi":"10.1016/j.apsusc.2024.160655","author":[{"full_name":"Ruhm, Lukas","last_name":"Ruhm","first_name":"Lukas"},{"last_name":"Löseke","first_name":"Jannik","full_name":"Löseke, Jannik"},{"full_name":"Vieth, Pascal","last_name":"Vieth","first_name":"Pascal"},{"full_name":"Prüßner, Tim","last_name":"Prüßner","first_name":"Tim"},{"first_name":"Guido","last_name":"Grundmeier","full_name":"Grundmeier, Guido","id":"194"}],"publication_identifier":{"issn":["0169-4332"]},"status":"public","year":"2024","title":"Adhesion promotion and corrosion resistance of mixed phosphonic acid monolayers on AA 2024","intvolume":"       670","publication_status":"published","date_updated":"2025-12-04T07:36:56Z"},{"date_created":"2023-01-16T08:57:02Z","department":[{"_id":"302"}],"keyword":["Surfaces","Coatings and Films","Condensed Matter Physics","Surfaces and Interfaces","General Physics and Astronomy","General Chemistry"],"type":"journal_article","publication":"Applied Surface Science","language":[{"iso":"eng"}],"article_number":"155355","doi":"10.1016/j.apsusc.2022.155355","publication_identifier":{"issn":["0169-4332"]},"author":[{"first_name":"Jiangling","last_name":"Su","full_name":"Su, Jiangling"},{"last_name":"González Orive","first_name":"Alejandro","full_name":"González Orive, Alejandro"},{"id":"194","first_name":"Guido","last_name":"Grundmeier","full_name":"Grundmeier, Guido"}],"year":"2022","title":"Nano-FTIR and chemical force analysis of electrografted aryldiazonium salts on ODT-microcontact printed Au-surfaces","intvolume":"       609","publication_status":"published","date_updated":"2023-01-16T08:57:20Z","citation":{"ieee":"J. Su, A. González Orive, and G. Grundmeier, “Nano-FTIR and chemical force analysis of electrografted aryldiazonium salts on ODT-microcontact printed Au-surfaces,” <i>Applied Surface Science</i>, vol. 609, Art. no. 155355, 2022, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2022.155355\">10.1016/j.apsusc.2022.155355</a>.","apa":"Su, J., González Orive, A., &#38; Grundmeier, G. (2022). Nano-FTIR and chemical force analysis of electrografted aryldiazonium salts on ODT-microcontact printed Au-surfaces. <i>Applied Surface Science</i>, <i>609</i>, Article 155355. <a href=\"https://doi.org/10.1016/j.apsusc.2022.155355\">https://doi.org/10.1016/j.apsusc.2022.155355</a>","short":"J. Su, A. González Orive, G. Grundmeier, Applied Surface Science 609 (2022).","chicago":"Su, Jiangling, Alejandro González Orive, and Guido Grundmeier. “Nano-FTIR and Chemical Force Analysis of Electrografted Aryldiazonium Salts on ODT-Microcontact Printed Au-Surfaces.” <i>Applied Surface Science</i> 609 (2022). <a href=\"https://doi.org/10.1016/j.apsusc.2022.155355\">https://doi.org/10.1016/j.apsusc.2022.155355</a>.","mla":"Su, Jiangling, et al. “Nano-FTIR and Chemical Force Analysis of Electrografted Aryldiazonium Salts on ODT-Microcontact Printed Au-Surfaces.” <i>Applied Surface Science</i>, vol. 609, 155355, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2022.155355\">10.1016/j.apsusc.2022.155355</a>.","bibtex":"@article{Su_González Orive_Grundmeier_2022, title={Nano-FTIR and chemical force analysis of electrografted aryldiazonium salts on ODT-microcontact printed Au-surfaces}, volume={609}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2022.155355\">10.1016/j.apsusc.2022.155355</a>}, number={155355}, journal={Applied Surface Science}, publisher={Elsevier BV}, author={Su, Jiangling and González Orive, Alejandro and Grundmeier, Guido}, year={2022} }","ama":"Su J, González Orive A, Grundmeier G. Nano-FTIR and chemical force analysis of electrografted aryldiazonium salts on ODT-microcontact printed Au-surfaces. <i>Applied Surface Science</i>. 2022;609. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2022.155355\">10.1016/j.apsusc.2022.155355</a>"},"_id":"36874","publisher":"Elsevier BV","volume":609,"user_id":"48864","status":"public"},{"publication":"Applied Surface Science","department":[{"_id":"302"}],"type":"journal_article","keyword":["Surfaces","Coatings and Films","Condensed Matter Physics","Surfaces and Interfaces","General Physics and Astronomy","General Chemistry"],"date_created":"2023-01-11T10:09:49Z","intvolume":"       604","date_updated":"2023-01-24T08:10:06Z","publication_status":"published","publication_identifier":{"issn":["0169-4332"]},"author":[{"first_name":"Maria Teresa","last_name":"de los Arcos de Pedro","full_name":"de los Arcos de Pedro, Maria Teresa","id":"54556"},{"full_name":"Weinberger, Christian","first_name":"Christian","last_name":"Weinberger"},{"full_name":"Zysk, Frederik","last_name":"Zysk","first_name":"Frederik"},{"full_name":"Raj Damerla, Varun","first_name":"Varun","last_name":"Raj Damerla"},{"last_name":"Kollmann","first_name":"Sabrina","full_name":"Kollmann, Sabrina"},{"full_name":"Vieth, Pascal","first_name":"Pascal","last_name":"Vieth"},{"full_name":"Tiemann, Michael","first_name":"Michael","last_name":"Tiemann"},{"full_name":"Kühne, Thomas D.","first_name":"Thomas D.","last_name":"Kühne"},{"full_name":"Grundmeier, Guido","first_name":"Guido","last_name":"Grundmeier"}],"year":"2022","title":"Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS","doi":"10.1016/j.apsusc.2022.154525","language":[{"iso":"eng"}],"article_number":"154525","citation":{"ieee":"M. T. de los Arcos de Pedro <i>et al.</i>, “Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS,” <i>Applied Surface Science</i>, vol. 604, Art. no. 154525, 2022, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">10.1016/j.apsusc.2022.154525</a>.","apa":"de los Arcos de Pedro, M. T., Weinberger, C., Zysk, F., Raj Damerla, V., Kollmann, S., Vieth, P., Tiemann, M., Kühne, T. D., &#38; Grundmeier, G. (2022). Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS. <i>Applied Surface Science</i>, <i>604</i>, Article 154525. <a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">https://doi.org/10.1016/j.apsusc.2022.154525</a>","chicago":"Arcos de Pedro, Maria Teresa de los, Christian Weinberger, Frederik Zysk, Varun Raj Damerla, Sabrina Kollmann, Pascal Vieth, Michael Tiemann, Thomas D. Kühne, and Guido Grundmeier. “Challenges in the Interpretation of Gas Core Levels for the Determination of Gas-Solid Interactions within Dielectric Porous Films by Ambient Pressure XPS.” <i>Applied Surface Science</i> 604 (2022). <a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">https://doi.org/10.1016/j.apsusc.2022.154525</a>.","short":"M.T. de los Arcos de Pedro, C. Weinberger, F. Zysk, V. Raj Damerla, S. Kollmann, P. Vieth, M. Tiemann, T.D. Kühne, G. Grundmeier, Applied Surface Science 604 (2022).","mla":"de los Arcos de Pedro, Maria Teresa, et al. “Challenges in the Interpretation of Gas Core Levels for the Determination of Gas-Solid Interactions within Dielectric Porous Films by Ambient Pressure XPS.” <i>Applied Surface Science</i>, vol. 604, 154525, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">10.1016/j.apsusc.2022.154525</a>.","bibtex":"@article{de los Arcos de Pedro_Weinberger_Zysk_Raj Damerla_Kollmann_Vieth_Tiemann_Kühne_Grundmeier_2022, title={Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS}, volume={604}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">10.1016/j.apsusc.2022.154525</a>}, number={154525}, journal={Applied Surface Science}, publisher={Elsevier BV}, author={de los Arcos de Pedro, Maria Teresa and Weinberger, Christian and Zysk, Frederik and Raj Damerla, Varun and Kollmann, Sabrina and Vieth, Pascal and Tiemann, Michael and Kühne, Thomas D. and Grundmeier, Guido}, year={2022} }","ama":"de los Arcos de Pedro MT, Weinberger C, Zysk F, et al. Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS. <i>Applied Surface Science</i>. 2022;604. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">10.1016/j.apsusc.2022.154525</a>"},"status":"public","volume":604,"user_id":"54556","publisher":"Elsevier BV","_id":"35976"},{"quality_controlled":"1","citation":{"mla":"de los Arcos, Teresa, et al. “Challenges in the Interpretation of Gas Core Levels for the Determination of Gas-Solid Interactions within Dielectric Porous Films by Ambient Pressure XPS.” <i>Applied Surface Science</i>, vol. 604, 154525, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">10.1016/j.apsusc.2022.154525</a>.","bibtex":"@article{de los Arcos_Weinberger_Zysk_Raj Damerla_Kollmann_Vieth_Tiemann_Kühne_Grundmeier_2022, title={Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS}, volume={604}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">10.1016/j.apsusc.2022.154525</a>}, number={154525}, journal={Applied Surface Science}, publisher={Elsevier BV}, author={de los Arcos, Teresa and Weinberger, Christian and Zysk, Frederik and Raj Damerla, Varun and Kollmann, Sabrina and Vieth, Pascal and Tiemann, Michael and Kühne, Thomas and Grundmeier, Guido}, year={2022} }","ama":"de los Arcos T, Weinberger C, Zysk F, et al. Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS. <i>Applied Surface Science</i>. 2022;604. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">10.1016/j.apsusc.2022.154525</a>","ieee":"T. de los Arcos <i>et al.</i>, “Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS,” <i>Applied Surface Science</i>, vol. 604, Art. no. 154525, 2022, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">10.1016/j.apsusc.2022.154525</a>.","apa":"de los Arcos, T., Weinberger, C., Zysk, F., Raj Damerla, V., Kollmann, S., Vieth, P., Tiemann, M., Kühne, T., &#38; Grundmeier, G. (2022). Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS. <i>Applied Surface Science</i>, <i>604</i>, Article 154525. <a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">https://doi.org/10.1016/j.apsusc.2022.154525</a>","chicago":"Arcos, Teresa de los, Christian Weinberger, Frederik Zysk, Varun Raj Damerla, Sabrina Kollmann, Pascal Vieth, Michael Tiemann, Thomas Kühne, and Guido Grundmeier. “Challenges in the Interpretation of Gas Core Levels for the Determination of Gas-Solid Interactions within Dielectric Porous Films by Ambient Pressure XPS.” <i>Applied Surface Science</i> 604 (2022). <a href=\"https://doi.org/10.1016/j.apsusc.2022.154525\">https://doi.org/10.1016/j.apsusc.2022.154525</a>.","short":"T. de los Arcos, C. Weinberger, F. Zysk, V. Raj Damerla, S. Kollmann, P. Vieth, M. Tiemann, T. Kühne, G. Grundmeier, Applied Surface Science 604 (2022)."},"volume":604,"user_id":"23547","publisher":"Elsevier BV","_id":"33691","status":"public","department":[{"_id":"613"},{"_id":"35"},{"_id":"2"},{"_id":"307"},{"_id":"302"},{"_id":"304"}],"type":"journal_article","keyword":["Surfaces","Coatings and Films","Condensed Matter Physics","Surfaces and Interfaces","General Physics and Astronomy","General Chemistry"],"date_created":"2022-10-11T08:22:25Z","abstract":[{"text":"Near ambient pressure XPS in nitrogen atmosphere was utilized to investigate gas-solid interactions within porous SiO2 films ranging from 30 to 75 nm thickness. The films were differentiated in terms of porosity and roughness. The XPS N1s core levels of the N2 gas in presence of the SiO2 samples showed variations in width, binding energy and line shape. The width correlated with the surface charge induced in the dielectric films upon X-ray irradiation. The observed different binding energies observed for the N1s peak can only partly be associated with intrinsic work function differences between the samples, opening the possibility that the effect of physisorption at room temperature could be detected by a shift in the measured binding energy. However, the signals also show an increasing asymmetry with rising surface charge. This might be associated with the formation of vertical electrical gradients within the dielectric porous thin films, which complicates the assignment of binding energy positions to specific surface-related effects. With the support of Monte Carlo and first principles density functional theory calculations, the observed shifts were discussed in terms of the possible formation of transitory dipoles upon N2 physisorption within the porous SiO2 films.","lang":"eng"}],"publication":"Applied Surface Science","doi":"10.1016/j.apsusc.2022.154525","language":[{"iso":"eng"}],"article_number":"154525","intvolume":"       604","article_type":"original","date_updated":"2023-03-03T11:32:04Z","publication_status":"published","author":[{"first_name":"Teresa","last_name":"de los Arcos","full_name":"de los Arcos, Teresa"},{"full_name":"Weinberger, Christian","last_name":"Weinberger","first_name":"Christian","id":"11848"},{"id":"14757","full_name":"Zysk, Frederik","first_name":"Frederik","last_name":"Zysk"},{"full_name":"Raj Damerla, Varun","last_name":"Raj Damerla","first_name":"Varun"},{"full_name":"Kollmann, Sabrina","first_name":"Sabrina","last_name":"Kollmann"},{"full_name":"Vieth, Pascal","first_name":"Pascal","last_name":"Vieth"},{"orcid":"0000-0003-1711-2722","last_name":"Tiemann","first_name":"Michael","full_name":"Tiemann, Michael","id":"23547"},{"id":"49079","last_name":"Kühne","first_name":"Thomas","full_name":"Kühne, Thomas"},{"full_name":"Grundmeier, Guido","first_name":"Guido","last_name":"Grundmeier","id":"194"}],"publication_identifier":{"issn":["0169-4332"]},"year":"2022","title":"Challenges in the interpretation of gas core levels for the determination of gas-solid interactions within dielectric porous films by ambient pressure XPS"},{"citation":{"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.","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>","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.","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>.","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>.","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} }","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>"},"publication":"Applied Surface Science","department":[{"_id":"302"}],"type":"journal_article","date_created":"2021-07-08T11:57:33Z","intvolume":"       535","publication_status":"published","date_updated":"2022-01-06T06:55:37Z","author":[{"first_name":"Yu","last_name":"Yang","full_name":"Yang, Yu"},{"full_name":"Yu, Mingrui","last_name":"Yu","first_name":"Mingrui"},{"first_name":"Frederik","last_name":"Böke","full_name":"Böke, Frederik"},{"first_name":"Qin","last_name":"Qin","full_name":"Qin, Qin"},{"first_name":"René","last_name":"Hübner","full_name":"Hübner, René"},{"full_name":"Knust, Steffen","first_name":"Steffen","last_name":"Knust"},{"full_name":"Schwiderek, Sabrina","last_name":"Schwiderek","first_name":"Sabrina"},{"first_name":"Guido","last_name":"Grundmeier","full_name":"Grundmeier, Guido","id":"194"},{"last_name":"Fischer","first_name":"Horst","full_name":"Fischer, Horst"},{"first_name":"Adrian","last_name":"Keller","orcid":"0000-0001-7139-3110","full_name":"Keller, Adrian","id":"48864"}],"publication_identifier":{"issn":["0169-4332"]},"year":"2021","title":"Effect of nanoscale surface topography on the adsorption of globular proteins","status":"public","volume":535,"user_id":"48864","doi":"10.1016/j.apsusc.2020.147671","_id":"22643","language":[{"iso":"eng"}],"page":"147671"},{"page":"144991","_id":"22651","language":[{"iso":"eng"}],"user_id":"48864","doi":"10.1016/j.apsusc.2019.144991","volume":506,"status":"public","year":"2020","title":"Amyloid aggregation at solid-liquid interfaces: Perspectives of studies using model surfaces","publication_identifier":{"issn":["0169-4332"]},"author":[{"id":"48864","first_name":"Adrian","orcid":"0000-0001-7139-3110","last_name":"Keller","full_name":"Keller, Adrian"},{"full_name":"Grundmeier, Guido","last_name":"Grundmeier","first_name":"Guido","id":"194"}],"publication_status":"published","date_updated":"2022-01-06T06:55:38Z","intvolume":"       506","date_created":"2021-07-08T12:06:07Z","type":"journal_article","department":[{"_id":"302"}],"publication":"Applied Surface Science","citation":{"ama":"Keller A, Grundmeier G. Amyloid aggregation at solid-liquid interfaces: Perspectives of studies using model surfaces. <i>Applied Surface Science</i>. 2020;506:144991. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2019.144991\">10.1016/j.apsusc.2019.144991</a>","bibtex":"@article{Keller_Grundmeier_2020, title={Amyloid aggregation at solid-liquid interfaces: Perspectives of studies using model surfaces}, volume={506}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2019.144991\">10.1016/j.apsusc.2019.144991</a>}, journal={Applied Surface Science}, author={Keller, Adrian and Grundmeier, Guido}, year={2020}, pages={144991} }","mla":"Keller, Adrian, and Guido Grundmeier. “Amyloid Aggregation at Solid-Liquid Interfaces: Perspectives of Studies Using Model Surfaces.” <i>Applied Surface Science</i>, vol. 506, 2020, p. 144991, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2019.144991\">10.1016/j.apsusc.2019.144991</a>.","short":"A. Keller, G. Grundmeier, Applied Surface Science 506 (2020) 144991.","chicago":"Keller, Adrian, and Guido Grundmeier. “Amyloid Aggregation at Solid-Liquid Interfaces: Perspectives of Studies Using Model Surfaces.” <i>Applied Surface Science</i> 506 (2020): 144991. <a href=\"https://doi.org/10.1016/j.apsusc.2019.144991\">https://doi.org/10.1016/j.apsusc.2019.144991</a>.","apa":"Keller, A., &#38; Grundmeier, G. (2020). Amyloid aggregation at solid-liquid interfaces: Perspectives of studies using model surfaces. <i>Applied Surface Science</i>, <i>506</i>, 144991. <a href=\"https://doi.org/10.1016/j.apsusc.2019.144991\">https://doi.org/10.1016/j.apsusc.2019.144991</a>","ieee":"A. Keller and G. Grundmeier, “Amyloid aggregation at solid-liquid interfaces: Perspectives of studies using model surfaces,” <i>Applied Surface Science</i>, vol. 506, p. 144991, 2020."}},{"citation":{"ama":"Majumdar I, Sahoo SK, Parvan V, et al. Effects of KF and RbF treatments on Cu(In,Ga)Se2-based solar cells: A combined photoelectron spectroscopy and DFT study. <i>Applied Surface Science</i>. 2020;538. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2020.148085\">10.1016/j.apsusc.2020.148085</a>","bibtex":"@article{Majumdar_Sahoo_Parvan_Mirhosseini_Chacko_Wang_Greiner_Kühne_Schlatmann_Lauermann_2020, title={Effects of KF and RbF treatments on Cu(In,Ga)Se2-based solar cells: A combined photoelectron spectroscopy and DFT study}, volume={538}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2020.148085\">10.1016/j.apsusc.2020.148085</a>}, number={148085}, journal={Applied Surface Science}, publisher={Elsevier BV}, author={Majumdar, I. and Sahoo, S.K. and Parvan, V. and Mirhosseini, Hossein and Chacko, B. and Wang, Y. and Greiner, D. and Kühne, Thomas and Schlatmann, R. and Lauermann, I.}, year={2020} }","mla":"Majumdar, I., et al. “Effects of KF and RbF Treatments on Cu(In,Ga)Se2-Based Solar Cells: A Combined Photoelectron Spectroscopy and DFT Study.” <i>Applied Surface Science</i>, vol. 538, 148085, Elsevier BV, 2020, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2020.148085\">10.1016/j.apsusc.2020.148085</a>.","chicago":"Majumdar, I., S.K. Sahoo, V. Parvan, Hossein Mirhosseini, B. Chacko, Y. Wang, D. Greiner, Thomas Kühne, R. Schlatmann, and I. Lauermann. “Effects of KF and RbF Treatments on Cu(In,Ga)Se2-Based Solar Cells: A Combined Photoelectron Spectroscopy and DFT Study.” <i>Applied Surface Science</i> 538 (2020). <a href=\"https://doi.org/10.1016/j.apsusc.2020.148085\">https://doi.org/10.1016/j.apsusc.2020.148085</a>.","short":"I. Majumdar, S.K. Sahoo, V. Parvan, H. Mirhosseini, B. Chacko, Y. Wang, D. Greiner, T. Kühne, R. Schlatmann, I. Lauermann, Applied Surface Science 538 (2020).","apa":"Majumdar, I., Sahoo, S. K., Parvan, V., Mirhosseini, H., Chacko, B., Wang, Y., Greiner, D., Kühne, T., Schlatmann, R., &#38; Lauermann, I. (2020). Effects of KF and RbF treatments on Cu(In,Ga)Se2-based solar cells: A combined photoelectron spectroscopy and DFT study. <i>Applied Surface Science</i>, <i>538</i>, Article 148085. <a href=\"https://doi.org/10.1016/j.apsusc.2020.148085\">https://doi.org/10.1016/j.apsusc.2020.148085</a>","ieee":"I. Majumdar <i>et al.</i>, “Effects of KF and RbF treatments on Cu(In,Ga)Se2-based solar cells: A combined photoelectron spectroscopy and DFT study,” <i>Applied Surface Science</i>, vol. 538, Art. no. 148085, 2020, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2020.148085\">10.1016/j.apsusc.2020.148085</a>."},"volume":538,"user_id":"71051","publisher":"Elsevier BV","_id":"33646","status":"public","department":[{"_id":"613"}],"keyword":["Surfaces","Coatings and Films","Condensed Matter Physics","Surfaces and Interfaces","General Physics and Astronomy","General Chemistry"],"type":"journal_article","date_created":"2022-10-10T08:12:36Z","publication":"Applied Surface Science","doi":"10.1016/j.apsusc.2020.148085","language":[{"iso":"eng"}],"article_number":"148085","intvolume":"       538","date_updated":"2022-10-10T08:13:14Z","publication_status":"published","publication_identifier":{"issn":["0169-4332"]},"author":[{"last_name":"Majumdar","first_name":"I.","full_name":"Majumdar, I."},{"last_name":"Sahoo","first_name":"S.K.","full_name":"Sahoo, S.K."},{"first_name":"V.","last_name":"Parvan","full_name":"Parvan, V."},{"id":"71051","last_name":"Mirhosseini","first_name":"Hossein","orcid":"0000-0001-6179-1545","full_name":"Mirhosseini, Hossein"},{"last_name":"Chacko","first_name":"B.","full_name":"Chacko, B."},{"first_name":"Y.","last_name":"Wang","full_name":"Wang, Y."},{"last_name":"Greiner","first_name":"D.","full_name":"Greiner, D."},{"last_name":"Kühne","first_name":"Thomas","full_name":"Kühne, Thomas","id":"49079"},{"first_name":"R.","last_name":"Schlatmann","full_name":"Schlatmann, R."},{"last_name":"Lauermann","first_name":"I.","full_name":"Lauermann, I."}],"title":"Effects of KF and RbF treatments on Cu(In,Ga)Se2-based solar cells: A combined photoelectron spectroscopy and DFT study","year":"2020"},{"abstract":[{"lang":"eng","text":"Monodisperse micron-sized silica particle monolayers deposited onto plasma-grown SiOx-ultra-thin films have been used as reference systems to investigate wetting, water adsorption and capillary bridge formation as a function of silica surface functionalization. 1H,1H, 2H,2H perfluorooctyltriethoxysil (FOTS) monolayers, have been deposited on the respective surfaces by means of chemical vapor deposition resulting in macroscopically low energy surfaces. X-ray photoelectron spectroscopy (XPS) and Fourier transform infrared (FTIR) reflection absorption spectroscopy confirmed the monolayer formation. Water adsorption isotherms were studied by a combination of in-situ FTIR reflection spectroscopy and quartz crystal microbalance (QCM) while macroscopic wetting was analysed by contact angle measurements. The comparative data evaluation indicates that the macroscopic wetting behaviour was changed as expected, however, that water nanodroplets formed both at intrinsic defects of the FOTS monolayer and at the FOTS/SiOx interface. Capillary bridges of liquid water are dominantly formed in the confined particle contact areas and between surface asperities on the particles. The comparison of wetting, adsorption and capillary bridge formation shows that the hydrophobization of porous materials by organosilane monolayers leads to the formation of morphology dependent nanoscopic defects that act as sites for preferential capillary bridge formation."}],"publication":"Applied Surface Science","citation":{"chicago":"Giner, Ignacio, Boray Torun, Yan Han, Belma Duderija, Dennis Meinderink, Alejandro González Orive, Maria Teresa de los Arcos de Pedro, et al. “Water Adsorption and Capillary Bridge Formation on Silica Micro-Particle Layers Modified with Perfluorinated Organosilane Monolayers.” <i>Applied Surface Science</i>, 2019, 873–79. <a href=\"https://doi.org/10.1016/j.apsusc.2018.12.221\">https://doi.org/10.1016/j.apsusc.2018.12.221</a>.","ama":"Giner I, Torun B, Han Y, et al. Water adsorption and capillary bridge formation on silica micro-particle layers modified with perfluorinated organosilane monolayers. <i>Applied Surface Science</i>. Published online 2019:873-879. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2018.12.221\">10.1016/j.apsusc.2018.12.221</a>","short":"I. Giner, B. Torun, Y. Han, B. Duderija, D. Meinderink, A.G. Orive, M.T. de los Arcos de Pedro, C. Weinberger, M. Tiemann, H.-J. Schmid, G. Grundmeier, Applied Surface Science (2019) 873–879.","bibtex":"@article{Giner_Torun_Han_Duderija_Meinderink_Orive_de los Arcos de Pedro_Weinberger_Tiemann_Schmid_et al._2019, title={Water adsorption and capillary bridge formation on silica micro-particle layers modified with perfluorinated organosilane monolayers}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2018.12.221\">10.1016/j.apsusc.2018.12.221</a>}, journal={Applied Surface Science}, author={Giner, Ignacio and Torun, Boray and Han, Yan and Duderija, Belma and Meinderink, Dennis and Orive, Alejandro González and de los Arcos de Pedro, Maria Teresa and Weinberger, Christian and Tiemann, Michael and Schmid, Hans-Joachim and et al.}, year={2019}, pages={873–879} }","mla":"Giner, Ignacio, et al. “Water Adsorption and Capillary Bridge Formation on Silica Micro-Particle Layers Modified with Perfluorinated Organosilane Monolayers.” <i>Applied Surface Science</i>, 2019, pp. 873–79, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2018.12.221\">10.1016/j.apsusc.2018.12.221</a>.","apa":"Giner, I., Torun, B., Han, Y., Duderija, B., Meinderink, D., Orive, A. G., de los Arcos de Pedro, M. T., Weinberger, C., Tiemann, M., Schmid, H.-J., &#38; Grundmeier, G. (2019). Water adsorption and capillary bridge formation on silica micro-particle layers modified with perfluorinated organosilane monolayers. <i>Applied Surface Science</i>, 873–879. <a href=\"https://doi.org/10.1016/j.apsusc.2018.12.221\">https://doi.org/10.1016/j.apsusc.2018.12.221</a>","ieee":"I. Giner <i>et al.</i>, “Water adsorption and capillary bridge formation on silica micro-particle layers modified with perfluorinated organosilane monolayers,” <i>Applied Surface Science</i>, pp. 873–879, 2019, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2018.12.221\">10.1016/j.apsusc.2018.12.221</a>."},"type":"journal_article","department":[{"_id":"302"}],"date_created":"2021-07-07T08:40:38Z","date_updated":"2023-07-12T07:58:00Z","publication_status":"published","status":"public","year":"2019","title":"Water adsorption and capillary bridge formation on silica micro-particle layers modified with perfluorinated organosilane monolayers","publication_identifier":{"issn":["0169-4332"]},"author":[{"first_name":"Ignacio","last_name":"Giner","full_name":"Giner, Ignacio"},{"full_name":"Torun, Boray","first_name":"Boray","last_name":"Torun"},{"first_name":"Yan","last_name":"Han","full_name":"Han, Yan"},{"last_name":"Duderija","first_name":"Belma","full_name":"Duderija, Belma","id":"54863"},{"first_name":"Dennis","last_name":"Meinderink","full_name":"Meinderink, Dennis"},{"full_name":"Orive, Alejandro González","last_name":"Orive","first_name":"Alejandro González"},{"last_name":"de los Arcos de Pedro","first_name":"Maria Teresa","full_name":"de los Arcos de Pedro, Maria Teresa","id":"54556"},{"full_name":"Weinberger, Christian","first_name":"Christian","last_name":"Weinberger"},{"orcid":"0000-0003-1711-2722","first_name":"Michael","last_name":"Tiemann","full_name":"Tiemann, Michael","id":"23547"},{"full_name":"Schmid, Hans-Joachim","orcid":"000-0001-8590-1921","first_name":"Hans-Joachim","last_name":"Schmid","id":"464"},{"id":"194","full_name":"Grundmeier, Guido","first_name":"Guido","last_name":"Grundmeier"}],"doi":"10.1016/j.apsusc.2018.12.221","user_id":"54863","page":"873-879","language":[{"iso":"eng"}],"_id":"22541"},{"citation":{"mla":"González-Orive, A., et al. “Analysis of Polymer/Oxide Interfaces under Ambient Conditions – An Experimental Perspective.” <i>Applied Surface Science</i>, 2018, pp. 581–94, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2018.02.155\">10.1016/j.apsusc.2018.02.155</a>.","bibtex":"@article{González-Orive_Giner_de los Arcos de Pedro_Keller_Grundmeier_2018, title={Analysis of polymer/oxide interfaces under ambient conditions – An experimental perspective}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2018.02.155\">10.1016/j.apsusc.2018.02.155</a>}, journal={Applied Surface Science}, author={González-Orive, A. and Giner, I. and de los Arcos de Pedro, Maria Teresa and Keller, Adrian and Grundmeier, Guido}, year={2018}, pages={581–594} }","ama":"González-Orive A, Giner I, de los Arcos de Pedro MT, Keller A, Grundmeier G. Analysis of polymer/oxide interfaces under ambient conditions – An experimental perspective. <i>Applied Surface Science</i>. Published online 2018:581-594. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2018.02.155\">10.1016/j.apsusc.2018.02.155</a>","ieee":"A. González-Orive, I. Giner, M. T. de los Arcos de Pedro, A. Keller, and G. Grundmeier, “Analysis of polymer/oxide interfaces under ambient conditions – An experimental perspective,” <i>Applied Surface Science</i>, pp. 581–594, 2018, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2018.02.155\">10.1016/j.apsusc.2018.02.155</a>.","apa":"González-Orive, A., Giner, I., de los Arcos de Pedro, M. T., Keller, A., &#38; Grundmeier, G. (2018). Analysis of polymer/oxide interfaces under ambient conditions – An experimental perspective. <i>Applied Surface Science</i>, 581–594. <a href=\"https://doi.org/10.1016/j.apsusc.2018.02.155\">https://doi.org/10.1016/j.apsusc.2018.02.155</a>","chicago":"González-Orive, A., I. Giner, Maria Teresa de los Arcos de Pedro, Adrian Keller, and Guido Grundmeier. “Analysis of Polymer/Oxide Interfaces under Ambient Conditions – An Experimental Perspective.” <i>Applied Surface Science</i>, 2018, 581–94. <a href=\"https://doi.org/10.1016/j.apsusc.2018.02.155\">https://doi.org/10.1016/j.apsusc.2018.02.155</a>.","short":"A. González-Orive, I. Giner, M.T. de los Arcos de Pedro, A. Keller, G. 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Schneider, “Influence of O2 exposure on the interaction between CH4 and amorphous AlYB14,” <i>Applied Surface Science</i>, pp. 1165–1172, 2016, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2016.09.092\">10.1016/j.apsusc.2016.09.092</a>.","ama":"Hunold O, Wiesing M, de los Arcos de Pedro MT, Music D, Grundmeier G, Schneider JM. Influence of O2 exposure on the interaction between CH4 and amorphous AlYB14. <i>Applied Surface Science</i>. Published online 2016:1165-1172. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2016.09.092\">10.1016/j.apsusc.2016.09.092</a>","bibtex":"@article{Hunold_Wiesing_de los Arcos de Pedro_Music_Grundmeier_Schneider_2016, title={Influence of O2 exposure on the interaction between CH4 and amorphous AlYB14}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2016.09.092\">10.1016/j.apsusc.2016.09.092</a>}, journal={Applied Surface Science}, author={Hunold, Oliver and Wiesing, Martin and de los Arcos de Pedro, Maria Teresa and Music, Denis and Grundmeier, Guido and Schneider, Jochen M.}, year={2016}, pages={1165–1172} }","mla":"Hunold, Oliver, et al. “Influence of O2 Exposure on the Interaction between CH4 and Amorphous AlYB14.” <i>Applied Surface Science</i>, 2016, pp. 1165–72, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2016.09.092\">10.1016/j.apsusc.2016.09.092</a>."},"date_created":"2021-07-07T09:08:19Z","type":"journal_article","department":[{"_id":"302"}],"year":"2016","status":"public","title":"Influence of O2 exposure on the interaction between CH4 and amorphous AlYB14","publication_identifier":{"issn":["0169-4332"]},"author":[{"full_name":"Hunold, Oliver","last_name":"Hunold","first_name":"Oliver"},{"first_name":"Martin","last_name":"Wiesing","full_name":"Wiesing, Martin"},{"id":"54556","full_name":"de los Arcos de Pedro, Maria Teresa","first_name":"Maria Teresa","last_name":"de los Arcos de Pedro"},{"first_name":"Denis","last_name":"Music","full_name":"Music, Denis"},{"full_name":"Grundmeier, Guido","first_name":"Guido","last_name":"Grundmeier"},{"full_name":"Schneider, Jochen M.","first_name":"Jochen M.","last_name":"Schneider"}],"date_updated":"2023-01-24T08:16:20Z","publication_status":"published","page":"1165-1172","_id":"22567","language":[{"iso":"eng"}],"doi":"10.1016/j.apsusc.2016.09.092","user_id":"54556"},{"status":"public","volume":290,"user_id":"7266","_id":"20945","page":"207-214","quality_controlled":"1","citation":{"bibtex":"@article{Ebbert_Grundmeier_Buitkamp_Kroeger_Messerschmidt_Thissen_2014, title={Toward a microscopic understanding of the calcium-silicate-hydrates/water interface}, volume={290}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2013.11.045\">10.1016/j.apsusc.2013.11.045</a>}, journal={APPLIED SURFACE SCIENCE}, author={Ebbert, Christoph and Grundmeier, Guido and Buitkamp, Nadine and Kroeger, Alexander and Messerschmidt, Florian and Thissen, Peter}, year={2014}, pages={207–214} }","ama":"Ebbert C, Grundmeier G, Buitkamp N, Kroeger A, Messerschmidt F, Thissen P. Toward a microscopic understanding of the calcium-silicate-hydrates/water interface. <i>APPLIED SURFACE SCIENCE</i>. 2014;290:207-214. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2013.11.045\">10.1016/j.apsusc.2013.11.045</a>","mla":"Ebbert, Christoph, et al. “Toward a Microscopic Understanding of the Calcium-Silicate-Hydrates/Water Interface.” <i>APPLIED SURFACE SCIENCE</i>, vol. 290, 2014, pp. 207–14, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2013.11.045\">10.1016/j.apsusc.2013.11.045</a>.","short":"C. Ebbert, G. Grundmeier, N. Buitkamp, A. Kroeger, F. Messerschmidt, P. Thissen, APPLIED SURFACE SCIENCE 290 (2014) 207–214.","chicago":"Ebbert, Christoph, Guido Grundmeier, Nadine Buitkamp, Alexander Kroeger, Florian Messerschmidt, and Peter Thissen. “Toward a Microscopic Understanding of the Calcium-Silicate-Hydrates/Water Interface.” <i>APPLIED SURFACE SCIENCE</i> 290 (2014): 207–14. <a href=\"https://doi.org/10.1016/j.apsusc.2013.11.045\">https://doi.org/10.1016/j.apsusc.2013.11.045</a>.","ieee":"C. Ebbert, G. Grundmeier, N. Buitkamp, A. Kroeger, F. Messerschmidt, and P. Thissen, “Toward a microscopic understanding of the calcium-silicate-hydrates/water interface,” <i>APPLIED SURFACE SCIENCE</i>, vol. 290, pp. 207–214, 2014, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2013.11.045\">10.1016/j.apsusc.2013.11.045</a>.","apa":"Ebbert, C., Grundmeier, G., Buitkamp, N., Kroeger, A., Messerschmidt, F., &#38; Thissen, P. (2014). Toward a microscopic understanding of the calcium-silicate-hydrates/water interface. <i>APPLIED SURFACE SCIENCE</i>, <i>290</i>, 207–214. <a href=\"https://doi.org/10.1016/j.apsusc.2013.11.045\">https://doi.org/10.1016/j.apsusc.2013.11.045</a>"},"isi":"1","external_id":{"isi":["000329060100032"]},"intvolume":"       290","date_updated":"2025-11-18T12:05:39Z","publication_status":"published","publication_identifier":{"eissn":["1873-5584"],"issn":["0169-4332"]},"author":[{"full_name":"Ebbert, Christoph","last_name":"Ebbert","first_name":"Christoph","id":"7266"},{"full_name":"Grundmeier, Guido","first_name":"Guido","last_name":"Grundmeier","id":"194"},{"id":"1449","last_name":"Buitkamp","first_name":"Nadine","full_name":"Buitkamp, Nadine"},{"full_name":"Kroeger, Alexander","first_name":"Alexander","last_name":"Kroeger"},{"first_name":"Florian","last_name":"Messerschmidt","full_name":"Messerschmidt, Florian"},{"full_name":"Thissen, Peter","last_name":"Thissen","first_name":"Peter"}],"year":"2014","title":"Toward a microscopic understanding of the calcium-silicate-hydrates/water interface","doi":"10.1016/j.apsusc.2013.11.045","language":[{"iso":"eng"}],"abstract":[{"text":"Calcium-Silicate-Hydrates (C-S-H) are the main binding phases in most concrete which is the primarily used composite construction material in the world. However, a big lack is cleaving between the actual knowledge about C-S-H, compared to what could be reached using state-of-the-art technologies of modern research. In this article, the formation of a C-S-H phase on a native oxide covered silicon wafer is investigated by means of in-situ attenuated total reflection infrared (ATR-IR) and ex-situ surface-enhanced Raman spectroscopy (SERS). The total thickness of the C-S-H phase is determined by X-ray photoelectron spectroscopy (XPS) to be 3 nm. The formation appears to be reversible depending on the environment pH value and can be performed at room temperature. Based on density functional theory (DFT) calculations, it is shown that the C-S-H phase in the presence of water will change its chemical composition in order to reach the thermodynamic ground state of the system. This change is achieved by a metal-proton exchange reaction. The stoichiometry of these metal-proton exchange reactions is nearly independent of the environment pH value. Electrokinetic measurements yield isoelectric points of 2.0 and 2.6 for the native oxide covered silicon wafer (SiO2) and the C-S-H phase. This is consistent with a predominance of Si-O sites at the C-S-H/water interface. (C) 2013 Elsevier B. V. All rights reserved.","lang":"eng"}],"publication":"APPLIED SURFACE SCIENCE","department":[{"_id":"35"},{"_id":"302"},{"_id":"321"}],"type":"journal_article","date_created":"2021-01-13T10:12:51Z"},{"publication_status":"published","date_updated":"2025-12-05T10:31:53Z","title":"Temperature dependent LiNbO3(0001): Surface reconstruction and surface charge","status":"public","year":"2014","publication_identifier":{"issn":["0169-4332"]},"author":[{"full_name":"Sanna, S.","first_name":"S.","last_name":"Sanna"},{"full_name":"Hölscher, R.","first_name":"R.","last_name":"Hölscher"},{"first_name":"Wolf Gero","orcid":"0000-0002-2717-5076","last_name":"Schmidt","full_name":"Schmidt, Wolf Gero","id":"468"}],"user_id":"16199","doi":"10.1016/j.apsusc.2014.01.104","page":"70-78","_id":"13515","language":[{"iso":"eng"}],"project":[{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"},{"_id":"53","name":"TRR 142"},{"_id":"55","name":"TRR 142 - Project Area B"},{"_id":"68","name":"TRR 142 - Subproject B3"},{"_id":"69","name":"TRR 142 - Subproject B4"}],"publication":"Applied Surface Science","citation":{"chicago":"Sanna, S., R. Hölscher, and Wolf Gero Schmidt. “Temperature Dependent LiNbO3(0001): Surface Reconstruction and Surface Charge.” <i>Applied Surface Science</i>, 2014, 70–78. <a href=\"https://doi.org/10.1016/j.apsusc.2014.01.104\">https://doi.org/10.1016/j.apsusc.2014.01.104</a>.","short":"S. Sanna, R. Hölscher, W.G. Schmidt, Applied Surface Science (2014) 70–78.","ieee":"S. Sanna, R. Hölscher, and W. G. Schmidt, “Temperature dependent LiNbO3(0001): Surface reconstruction and surface charge,” <i>Applied Surface Science</i>, pp. 70–78, 2014, doi: <a href=\"https://doi.org/10.1016/j.apsusc.2014.01.104\">10.1016/j.apsusc.2014.01.104</a>.","apa":"Sanna, S., Hölscher, R., &#38; Schmidt, W. G. (2014). Temperature dependent LiNbO3(0001): Surface reconstruction and surface charge. <i>Applied Surface Science</i>, 70–78. <a href=\"https://doi.org/10.1016/j.apsusc.2014.01.104\">https://doi.org/10.1016/j.apsusc.2014.01.104</a>","bibtex":"@article{Sanna_Hölscher_Schmidt_2014, title={Temperature dependent LiNbO3(0001): Surface reconstruction and surface charge}, DOI={<a href=\"https://doi.org/10.1016/j.apsusc.2014.01.104\">10.1016/j.apsusc.2014.01.104</a>}, journal={Applied Surface Science}, author={Sanna, S. and Hölscher, R. and Schmidt, Wolf Gero}, year={2014}, pages={70–78} }","ama":"Sanna S, Hölscher R, Schmidt WG. Temperature dependent LiNbO3(0001): Surface reconstruction and surface charge. <i>Applied Surface Science</i>. Published online 2014:70-78. doi:<a href=\"https://doi.org/10.1016/j.apsusc.2014.01.104\">10.1016/j.apsusc.2014.01.104</a>","mla":"Sanna, S., et al. “Temperature Dependent LiNbO3(0001): Surface Reconstruction and Surface Charge.” <i>Applied Surface Science</i>, 2014, pp. 70–78, doi:<a href=\"https://doi.org/10.1016/j.apsusc.2014.01.104\">10.1016/j.apsusc.2014.01.104</a>."},"type":"journal_article","department":[{"_id":"15"},{"_id":"170"},{"_id":"295"},{"_id":"35"},{"_id":"230"},{"_id":"429"},{"_id":"27"}],"date_created":"2019-09-30T13:40:10Z"}]
