[{"citation":{"mla":"Hanke, Marcel, et al. “Anion-Specific Structure and Stability of Guanidinium-Bound DNA Origami.” <i>Computational and Structural Biotechnology Journal</i>, vol. 20, Elsevier BV, 2022, pp. 2611–23, doi:<a href=\"https://doi.org/10.1016/j.csbj.2022.05.037\">10.1016/j.csbj.2022.05.037</a>.","ama":"Hanke M, Dornbusch D, Hadlich C, et al. Anion-specific structure and stability of guanidinium-bound DNA origami. <i>Computational and Structural Biotechnology Journal</i>. 2022;20:2611-2623. doi:<a href=\"https://doi.org/10.1016/j.csbj.2022.05.037\">10.1016/j.csbj.2022.05.037</a>","bibtex":"@article{Hanke_Dornbusch_Hadlich_Rossberg_Hansen_Grundmeier_Tsushima_Keller_Fahmy_2022, title={Anion-specific structure and stability of guanidinium-bound DNA origami}, volume={20}, DOI={<a href=\"https://doi.org/10.1016/j.csbj.2022.05.037\">10.1016/j.csbj.2022.05.037</a>}, journal={Computational and Structural Biotechnology Journal}, publisher={Elsevier BV}, author={Hanke, Marcel and Dornbusch, Daniel and Hadlich, Christoph and Rossberg, Andre and Hansen, Niklas and Grundmeier, Guido and Tsushima, Satoru and Keller, Adrian and Fahmy, Karim}, year={2022}, pages={2611–2623} }","apa":"Hanke, M., Dornbusch, D., Hadlich, C., Rossberg, A., Hansen, N., Grundmeier, G., Tsushima, S., Keller, A., &#38; Fahmy, K. (2022). Anion-specific structure and stability of guanidinium-bound DNA origami. <i>Computational and Structural Biotechnology Journal</i>, <i>20</i>, 2611–2623. <a href=\"https://doi.org/10.1016/j.csbj.2022.05.037\">https://doi.org/10.1016/j.csbj.2022.05.037</a>","ieee":"M. Hanke <i>et al.</i>, “Anion-specific structure and stability of guanidinium-bound DNA origami,” <i>Computational and Structural Biotechnology Journal</i>, vol. 20, pp. 2611–2623, 2022, doi: <a href=\"https://doi.org/10.1016/j.csbj.2022.05.037\">10.1016/j.csbj.2022.05.037</a>.","short":"M. Hanke, D. Dornbusch, C. Hadlich, A. Rossberg, N. Hansen, G. Grundmeier, S. Tsushima, A. Keller, K. Fahmy, Computational and Structural Biotechnology Journal 20 (2022) 2611–2623.","chicago":"Hanke, Marcel, Daniel Dornbusch, Christoph Hadlich, Andre Rossberg, Niklas Hansen, Guido Grundmeier, Satoru Tsushima, Adrian Keller, and Karim Fahmy. “Anion-Specific Structure and Stability of Guanidinium-Bound DNA Origami.” <i>Computational and Structural Biotechnology Journal</i> 20 (2022): 2611–23. <a href=\"https://doi.org/10.1016/j.csbj.2022.05.037\">https://doi.org/10.1016/j.csbj.2022.05.037</a>."},"status":"public","page":"2611-2623","_id":"31547","publisher":"Elsevier BV","user_id":"48864","volume":20,"publication":"Computational and Structural Biotechnology Journal","date_created":"2022-05-31T07:25:23Z","keyword":["Computer Science Applications","Genetics","Biochemistry","Structural Biology","Biophysics","Biotechnology"],"type":"journal_article","department":[{"_id":"302"}],"year":"2022","title":"Anion-specific structure and stability of guanidinium-bound DNA origami","publication_identifier":{"issn":["2001-0370"]},"author":[{"last_name":"Hanke","first_name":"Marcel","full_name":"Hanke, Marcel"},{"first_name":"Daniel","last_name":"Dornbusch","full_name":"Dornbusch, Daniel"},{"full_name":"Hadlich, Christoph","last_name":"Hadlich","first_name":"Christoph"},{"first_name":"Andre","last_name":"Rossberg","full_name":"Rossberg, Andre"},{"first_name":"Niklas","last_name":"Hansen","full_name":"Hansen, Niklas"},{"id":"194","full_name":"Grundmeier, Guido","first_name":"Guido","last_name":"Grundmeier"},{"full_name":"Tsushima, Satoru","last_name":"Tsushima","first_name":"Satoru"},{"full_name":"Keller, Adrian","orcid":"0000-0001-7139-3110","first_name":"Adrian","last_name":"Keller","id":"48864"},{"full_name":"Fahmy, Karim","last_name":"Fahmy","first_name":"Karim"}],"date_updated":"2022-05-31T07:26:17Z","publication_status":"published","intvolume":"        20","language":[{"iso":"eng"}],"doi":"10.1016/j.csbj.2022.05.037"},{"status":"public","user_id":"84268","volume":5,"page":"8273-8281","_id":"32764","publisher":"American Chemical Society (ACS)","citation":{"ieee":"R. M. Kasse <i>et al.</i>, “Combined Effects of Uniform Applied Pressure and Electrolyte Additives in Lithium-Metal Batteries,” <i>ACS Applied Energy Materials</i>, vol. 5, no. 7, pp. 8273–8281, 2022, doi: <a href=\"https://doi.org/10.1021/acsaem.2c00806\">10.1021/acsaem.2c00806</a>.","apa":"Kasse, R. M., Geise, N. R., Sebti, E., Lim, K., Takacs, C. J., Cao, C., Steinrück, H.-G., &#38; Toney, M. F. (2022). Combined Effects of Uniform Applied Pressure and Electrolyte Additives in Lithium-Metal Batteries. <i>ACS Applied Energy Materials</i>, <i>5</i>(7), 8273–8281. <a href=\"https://doi.org/10.1021/acsaem.2c00806\">https://doi.org/10.1021/acsaem.2c00806</a>","chicago":"Kasse, Robert M., Natalie R. Geise, Elias Sebti, Kipil Lim, Christopher J. Takacs, Chuntian Cao, Hans-Georg Steinrück, and Michael F. Toney. “Combined Effects of Uniform Applied Pressure and Electrolyte Additives in Lithium-Metal Batteries.” <i>ACS Applied Energy Materials</i> 5, no. 7 (2022): 8273–81. <a href=\"https://doi.org/10.1021/acsaem.2c00806\">https://doi.org/10.1021/acsaem.2c00806</a>.","short":"R.M. Kasse, N.R. Geise, E. Sebti, K. Lim, C.J. Takacs, C. Cao, H.-G. Steinrück, M.F. Toney, ACS Applied Energy Materials 5 (2022) 8273–8281.","mla":"Kasse, Robert M., et al. “Combined Effects of Uniform Applied Pressure and Electrolyte Additives in Lithium-Metal Batteries.” <i>ACS Applied Energy Materials</i>, vol. 5, no. 7, American Chemical Society (ACS), 2022, pp. 8273–81, doi:<a href=\"https://doi.org/10.1021/acsaem.2c00806\">10.1021/acsaem.2c00806</a>.","bibtex":"@article{Kasse_Geise_Sebti_Lim_Takacs_Cao_Steinrück_Toney_2022, title={Combined Effects of Uniform Applied Pressure and Electrolyte Additives in Lithium-Metal Batteries}, volume={5}, DOI={<a href=\"https://doi.org/10.1021/acsaem.2c00806\">10.1021/acsaem.2c00806</a>}, number={7}, journal={ACS Applied Energy Materials}, publisher={American Chemical Society (ACS)}, author={Kasse, Robert M. and Geise, Natalie R. and Sebti, Elias and Lim, Kipil and Takacs, Christopher J. and Cao, Chuntian and Steinrück, Hans-Georg and Toney, Michael F.}, year={2022}, pages={8273–8281} }","ama":"Kasse RM, Geise NR, Sebti E, et al. Combined Effects of Uniform Applied Pressure and Electrolyte Additives in Lithium-Metal Batteries. <i>ACS Applied Energy Materials</i>. 2022;5(7):8273-8281. doi:<a href=\"https://doi.org/10.1021/acsaem.2c00806\">10.1021/acsaem.2c00806</a>"},"date_updated":"2022-08-09T19:57:44Z","publication_status":"published","intvolume":"         5","year":"2022","title":"Combined Effects of Uniform Applied Pressure and Electrolyte Additives in Lithium-Metal Batteries","publication_identifier":{"issn":["2574-0962","2574-0962"]},"author":[{"full_name":"Kasse, Robert M.","first_name":"Robert M.","last_name":"Kasse"},{"full_name":"Geise, Natalie R.","last_name":"Geise","first_name":"Natalie R."},{"full_name":"Sebti, Elias","first_name":"Elias","last_name":"Sebti"},{"full_name":"Lim, Kipil","first_name":"Kipil","last_name":"Lim"},{"full_name":"Takacs, Christopher J.","first_name":"Christopher J.","last_name":"Takacs"},{"first_name":"Chuntian","last_name":"Cao","full_name":"Cao, Chuntian"},{"id":"84268","full_name":"Steinrück, Hans-Georg","last_name":"Steinrück","first_name":"Hans-Georg","orcid":"0000-0001-6373-0877"},{"full_name":"Toney, Michael F.","last_name":"Toney","first_name":"Michael F."}],"doi":"10.1021/acsaem.2c00806","language":[{"iso":"eng"}],"publication":"ACS Applied Energy Materials","issue":"7","type":"journal_article","keyword":["Electrical and Electronic Engineering","Materials Chemistry","Electrochemistry","Energy Engineering and Power Technology","Chemical Engineering (miscellaneous)"],"department":[{"_id":"633"}],"date_created":"2022-08-09T19:57:18Z"},{"title":"Direct visualization of the drug loading of single DNA origami nanostructures by AFM-IR nanospectroscopy","year":"2022","author":[{"full_name":"Hanke, Marcel","last_name":"Hanke","first_name":"Marcel"},{"full_name":"Grundmeier, Guido","last_name":"Grundmeier","first_name":"Guido","id":"194"},{"full_name":"Keller, Adrian","orcid":"0000-0001-7139-3110","first_name":"Adrian","last_name":"Keller","id":"48864"}],"publication_identifier":{"issn":["2040-3364","2040-3372"]},"date_updated":"2022-08-18T08:41:59Z","publication_status":"published","intvolume":"        14","language":[{"iso":"eng"}],"doi":"10.1039/d2nr02701a","publication":"Nanoscale","abstract":[{"text":"<jats:p>The efficient loading of DNA nanostructures with intercalating or groove-binding drugs is an important prerequisite for various applications in drug delivery. However, unambiguous verification and quantification of successful drug loading...</jats:p>","lang":"eng"}],"date_created":"2022-07-22T10:06:08Z","type":"journal_article","keyword":["General Materials Science"],"department":[{"_id":"302"}],"status":"public","page":"11552-11560","_id":"32406","publisher":"Royal Society of Chemistry (RSC)","user_id":"48864","volume":14,"citation":{"short":"M. Hanke, G. Grundmeier, A. Keller, Nanoscale 14 (2022) 11552–11560.","chicago":"Hanke, Marcel, Guido Grundmeier, and Adrian Keller. “Direct Visualization of the Drug Loading of Single DNA Origami Nanostructures by AFM-IR Nanospectroscopy.” <i>Nanoscale</i> 14 (2022): 11552–60. <a href=\"https://doi.org/10.1039/d2nr02701a\">https://doi.org/10.1039/d2nr02701a</a>.","ieee":"M. Hanke, G. Grundmeier, and A. Keller, “Direct visualization of the drug loading of single DNA origami nanostructures by AFM-IR nanospectroscopy,” <i>Nanoscale</i>, vol. 14, pp. 11552–11560, 2022, doi: <a href=\"https://doi.org/10.1039/d2nr02701a\">10.1039/d2nr02701a</a>.","apa":"Hanke, M., Grundmeier, G., &#38; Keller, A. (2022). Direct visualization of the drug loading of single DNA origami nanostructures by AFM-IR nanospectroscopy. <i>Nanoscale</i>, <i>14</i>, 11552–11560. <a href=\"https://doi.org/10.1039/d2nr02701a\">https://doi.org/10.1039/d2nr02701a</a>","bibtex":"@article{Hanke_Grundmeier_Keller_2022, title={Direct visualization of the drug loading of single DNA origami nanostructures by AFM-IR nanospectroscopy}, volume={14}, DOI={<a href=\"https://doi.org/10.1039/d2nr02701a\">10.1039/d2nr02701a</a>}, journal={Nanoscale}, publisher={Royal Society of Chemistry (RSC)}, author={Hanke, Marcel and Grundmeier, Guido and Keller, Adrian}, year={2022}, pages={11552–11560} }","ama":"Hanke M, Grundmeier G, Keller A. Direct visualization of the drug loading of single DNA origami nanostructures by AFM-IR nanospectroscopy. <i>Nanoscale</i>. 2022;14:11552-11560. doi:<a href=\"https://doi.org/10.1039/d2nr02701a\">10.1039/d2nr02701a</a>","mla":"Hanke, Marcel, et al. “Direct Visualization of the Drug Loading of Single DNA Origami Nanostructures by AFM-IR Nanospectroscopy.” <i>Nanoscale</i>, vol. 14, Royal Society of Chemistry (RSC), 2022, pp. 11552–60, doi:<a href=\"https://doi.org/10.1039/d2nr02701a\">10.1039/d2nr02701a</a>."}},{"status":"public","_id":"33009","publisher":"Springer Science and Business Media LLC","page":"2091-2101","volume":61,"user_id":"61597","citation":{"apa":"Kroke, A., Schmidt, A., Amini, A. M., Kalotai, N., Lehmann, A., Haardt, J., Bauer, J. M., Bischoff-Ferrari, H. A., Boeing, H., Egert, S., Ellinger, S., Kühn, T., Louis, S., Lorkowski, S., Nimptsch, K., Remer, T., Schulze, M. B., Siener, R., Stangl, G. I., … Schwingshackl, L. (2022). Dietary protein intake and health-related outcomes: a methodological protocol for the evidence evaluation and the outline of an evidence to decision framework underlying the evidence-based guideline of the German Nutrition Society. <i>European Journal of Nutrition</i>, <i>61</i>(4), 2091–2101. <a href=\"https://doi.org/10.1007/s00394-021-02789-5\">https://doi.org/10.1007/s00394-021-02789-5</a>","mla":"Kroke, Anja, et al. “Dietary Protein Intake and Health-Related Outcomes: A Methodological Protocol for the Evidence Evaluation and the Outline of an Evidence to Decision Framework Underlying the Evidence-Based Guideline of the German Nutrition Society.” <i>European Journal of Nutrition</i>, vol. 61, no. 4, Springer Science and Business Media LLC, 2022, pp. 2091–101, doi:<a href=\"https://doi.org/10.1007/s00394-021-02789-5\">10.1007/s00394-021-02789-5</a>.","ieee":"A. Kroke <i>et al.</i>, “Dietary protein intake and health-related outcomes: a methodological protocol for the evidence evaluation and the outline of an evidence to decision framework underlying the evidence-based guideline of the German Nutrition Society,” <i>European Journal of Nutrition</i>, vol. 61, no. 4, pp. 2091–2101, 2022, doi: <a href=\"https://doi.org/10.1007/s00394-021-02789-5\">10.1007/s00394-021-02789-5</a>.","chicago":"Kroke, Anja, Annemarie Schmidt, Anna M. Amini, Nicole Kalotai, Andreas Lehmann, Julia Haardt, Jürgen M. Bauer, et al. “Dietary Protein Intake and Health-Related Outcomes: A Methodological Protocol for the Evidence Evaluation and the Outline of an Evidence to Decision Framework Underlying the Evidence-Based Guideline of the German Nutrition Society.” <i>European Journal of Nutrition</i> 61, no. 4 (2022): 2091–2101. <a href=\"https://doi.org/10.1007/s00394-021-02789-5\">https://doi.org/10.1007/s00394-021-02789-5</a>.","ama":"Kroke A, Schmidt A, Amini AM, et al. Dietary protein intake and health-related outcomes: a methodological protocol for the evidence evaluation and the outline of an evidence to decision framework underlying the evidence-based guideline of the German Nutrition Society. <i>European Journal of Nutrition</i>. 2022;61(4):2091-2101. doi:<a href=\"https://doi.org/10.1007/s00394-021-02789-5\">10.1007/s00394-021-02789-5</a>","short":"A. Kroke, A. Schmidt, A.M. Amini, N. Kalotai, A. Lehmann, J. Haardt, J.M. Bauer, H.A. Bischoff-Ferrari, H. Boeing, S. Egert, S. Ellinger, T. Kühn, S. Louis, S. Lorkowski, K. Nimptsch, T. Remer, M.B. Schulze, R. Siener, G.I. Stangl, D. Volkert, A. Zittermann, A.E. Buyken, B. Watzl, L. Schwingshackl, European Journal of Nutrition 61 (2022) 2091–2101.","bibtex":"@article{Kroke_Schmidt_Amini_Kalotai_Lehmann_Haardt_Bauer_Bischoff-Ferrari_Boeing_Egert_et al._2022, title={Dietary protein intake and health-related outcomes: a methodological protocol for the evidence evaluation and the outline of an evidence to decision framework underlying the evidence-based guideline of the German Nutrition Society}, volume={61}, DOI={<a href=\"https://doi.org/10.1007/s00394-021-02789-5\">10.1007/s00394-021-02789-5</a>}, number={4}, journal={European Journal of Nutrition}, publisher={Springer Science and Business Media LLC}, author={Kroke, Anja and Schmidt, Annemarie and Amini, Anna M. and Kalotai, Nicole and Lehmann, Andreas and Haardt, Julia and Bauer, Jürgen M. and Bischoff-Ferrari, Heike A. and Boeing, Heiner and Egert, Sarah and et al.}, year={2022}, pages={2091–2101} }"},"publication_identifier":{"issn":["1436-6207","1436-6215"]},"author":[{"full_name":"Kroke, Anja","last_name":"Kroke","first_name":"Anja"},{"first_name":"Annemarie","last_name":"Schmidt","full_name":"Schmidt, Annemarie"},{"last_name":"Amini","first_name":"Anna M.","full_name":"Amini, Anna M."},{"last_name":"Kalotai","first_name":"Nicole","full_name":"Kalotai, Nicole"},{"first_name":"Andreas","last_name":"Lehmann","full_name":"Lehmann, Andreas"},{"first_name":"Julia","last_name":"Haardt","full_name":"Haardt, Julia"},{"full_name":"Bauer, Jürgen M.","first_name":"Jürgen M.","last_name":"Bauer"},{"full_name":"Bischoff-Ferrari, Heike A.","first_name":"Heike A.","last_name":"Bischoff-Ferrari"},{"full_name":"Boeing, Heiner","first_name":"Heiner","last_name":"Boeing"},{"full_name":"Egert, Sarah","first_name":"Sarah","last_name":"Egert"},{"first_name":"Sabine","last_name":"Ellinger","full_name":"Ellinger, Sabine"},{"last_name":"Kühn","first_name":"Tilman","full_name":"Kühn, Tilman"},{"first_name":"Sandrine","last_name":"Louis","full_name":"Louis, Sandrine"},{"full_name":"Lorkowski, Stefan","last_name":"Lorkowski","first_name":"Stefan"},{"full_name":"Nimptsch, Katharina","last_name":"Nimptsch","first_name":"Katharina"},{"last_name":"Remer","first_name":"Thomas","full_name":"Remer, Thomas"},{"full_name":"Schulze, Matthias B.","last_name":"Schulze","first_name":"Matthias B."},{"first_name":"Roswitha","last_name":"Siener","full_name":"Siener, Roswitha"},{"full_name":"Stangl, Gabriele I.","first_name":"Gabriele I.","last_name":"Stangl"},{"full_name":"Volkert, Dorothee","first_name":"Dorothee","last_name":"Volkert"},{"full_name":"Zittermann, Armin","last_name":"Zittermann","first_name":"Armin"},{"id":"65985","full_name":"Buyken, Anette E.","last_name":"Buyken","first_name":"Anette E."},{"last_name":"Watzl","first_name":"Bernhard","full_name":"Watzl, Bernhard"},{"last_name":"Schwingshackl","first_name":"Lukas","full_name":"Schwingshackl, Lukas"}],"year":"2022","title":"Dietary protein intake and health-related outcomes: a methodological protocol for the evidence evaluation and the outline of an evidence to decision framework underlying the evidence-based guideline of the German Nutrition Society","intvolume":"        61","date_updated":"2022-08-18T10:41:41Z","publication_status":"published","language":[{"iso":"eng"}],"doi":"10.1007/s00394-021-02789-5","issue":"4","publication":"European Journal of Nutrition","abstract":[{"text":"<jats:title>Abstract</jats:title><jats:sec>\r\n                <jats:title>Purpose</jats:title>\r\n                <jats:p>The present work aimed to delineate (i) a revised protocol according to recent methodological developments in evidence generation, to (ii) describe its interpretation, the assessment of the overall certainty of evidence and to (iii) outline an Evidence to Decision framework for deriving an evidence-based guideline on quantitative and qualitative aspects of dietary protein intake.</jats:p>\r\n              </jats:sec><jats:sec>\r\n                <jats:title>Methods</jats:title>\r\n                <jats:p>A methodological protocol to systematically investigate the association between dietary protein intake and several health outcomes and for deriving dietary protein intake recommendations for the primary prevention of various non-communicable diseases in the general adult population was developed.</jats:p>\r\n              </jats:sec><jats:sec>\r\n                <jats:title>Results</jats:title>\r\n                <jats:p>The developed methodological protocol relies on umbrella reviews including systematic reviews with or without meta-analyses. Systematic literature searches in three databases will be performed for each health-related outcome. The methodological quality of all selected systematic reviews will be evaluated using a modified version of AMSTAR 2, and the outcome-specific certainty of evidence for systematic reviews with or without meta-analysis will be assessed with NutriGrade. The general outline of the Evidence to Decision framework foresees that recommendations in the derived guideline will be given based on the overall certainty of evidence as well as on additional criteria such as sustainability.</jats:p>\r\n              </jats:sec><jats:sec>\r\n                <jats:title>Conclusion</jats:title>\r\n                <jats:p>The methodological protocol permits a systematic evaluation of published systematic reviews on dietary protein intake and its association with selected health-related outcomes. An Evidence to Decision framework will be the basis for the overall conclusions and the resulting recommendations for dietary protein intake.</jats:p>\r\n              </jats:sec>","lang":"eng"}],"date_created":"2022-08-18T10:36:12Z","department":[{"_id":"17"},{"_id":"22"},{"_id":"571"}],"type":"journal_article","keyword":["Nutrition and Dietetics","Medicine (miscellaneous)"]},{"date_created":"2022-09-12T07:17:26Z","department":[{"_id":"15"},{"_id":"230"}],"keyword":["Electrical and Electronic Engineering","Computational Theory and Mathematics","Condensed Matter Physics","Mathematical Physics","Nuclear and High Energy Physics","Electronic","Optical and Magnetic Materials","Statistical and Nonlinear Physics"],"type":"journal_article","citation":{"mla":"Bopp, Frederik, et al. “Quantum Dot Molecule Devices with Optical Control of Charge Status and Electronic Control of Coupling.” <i>Advanced Quantum Technologies</i>, 2200049, Wiley, 2022, doi:<a href=\"https://doi.org/10.1002/qute.202200049\">10.1002/qute.202200049</a>.","apa":"Bopp, F., Rojas, J., Revenga, N., Riedl, H., Sbresny, F., Boos, K., Simmet, T., Ahmadi, A., Gershoni, D., Kasprzak, J., Ludwig, A., Reitzenstein, S., Wieck, A., Reuter, D., Müller, K., &#38; Finley, J. J. (2022). Quantum Dot Molecule Devices with Optical Control of Charge Status and Electronic Control of Coupling. <i>Advanced Quantum Technologies</i>, Article 2200049. <a href=\"https://doi.org/10.1002/qute.202200049\">https://doi.org/10.1002/qute.202200049</a>","ieee":"F. Bopp <i>et al.</i>, “Quantum Dot Molecule Devices with Optical Control of Charge Status and Electronic Control of Coupling,” <i>Advanced Quantum Technologies</i>, Art. no. 2200049, 2022, doi: <a href=\"https://doi.org/10.1002/qute.202200049\">10.1002/qute.202200049</a>.","chicago":"Bopp, Frederik, Jonathan Rojas, Natalia Revenga, Hubert Riedl, Friedrich Sbresny, Katarina Boos, Tobias Simmet, et al. “Quantum Dot Molecule Devices with Optical Control of Charge Status and Electronic Control of Coupling.” <i>Advanced Quantum Technologies</i>, 2022. <a href=\"https://doi.org/10.1002/qute.202200049\">https://doi.org/10.1002/qute.202200049</a>.","ama":"Bopp F, Rojas J, Revenga N, et al. Quantum Dot Molecule Devices with Optical Control of Charge Status and Electronic Control of Coupling. <i>Advanced Quantum Technologies</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1002/qute.202200049\">10.1002/qute.202200049</a>","short":"F. Bopp, J. Rojas, N. Revenga, H. Riedl, F. Sbresny, K. Boos, T. Simmet, A. Ahmadi, D. Gershoni, J. Kasprzak, A. Ludwig, S. Reitzenstein, A. Wieck, D. Reuter, K. Müller, J.J. Finley, Advanced Quantum Technologies (2022).","bibtex":"@article{Bopp_Rojas_Revenga_Riedl_Sbresny_Boos_Simmet_Ahmadi_Gershoni_Kasprzak_et al._2022, title={Quantum Dot Molecule Devices with Optical Control of Charge Status and Electronic Control of Coupling}, DOI={<a href=\"https://doi.org/10.1002/qute.202200049\">10.1002/qute.202200049</a>}, number={2200049}, journal={Advanced Quantum Technologies}, publisher={Wiley}, author={Bopp, Frederik and Rojas, Jonathan and Revenga, Natalia and Riedl, Hubert and Sbresny, Friedrich and Boos, Katarina and Simmet, Tobias and Ahmadi, Arash and Gershoni, David and Kasprzak, Jacek and et al.}, year={2022} }"},"publication":"Advanced Quantum Technologies","language":[{"iso":"eng"}],"_id":"33332","publisher":"Wiley","article_number":"2200049","user_id":"42514","doi":"10.1002/qute.202200049","author":[{"full_name":"Bopp, Frederik","first_name":"Frederik","last_name":"Bopp"},{"first_name":"Jonathan","last_name":"Rojas","full_name":"Rojas, Jonathan"},{"full_name":"Revenga, Natalia","last_name":"Revenga","first_name":"Natalia"},{"full_name":"Riedl, Hubert","first_name":"Hubert","last_name":"Riedl"},{"first_name":"Friedrich","last_name":"Sbresny","full_name":"Sbresny, Friedrich"},{"full_name":"Boos, Katarina","last_name":"Boos","first_name":"Katarina"},{"last_name":"Simmet","first_name":"Tobias","full_name":"Simmet, Tobias"},{"last_name":"Ahmadi","first_name":"Arash","full_name":"Ahmadi, Arash"},{"first_name":"David","last_name":"Gershoni","full_name":"Gershoni, David"},{"full_name":"Kasprzak, Jacek","first_name":"Jacek","last_name":"Kasprzak"},{"full_name":"Ludwig, Arne","last_name":"Ludwig","first_name":"Arne"},{"full_name":"Reitzenstein, Stephan","first_name":"Stephan","last_name":"Reitzenstein"},{"full_name":"Wieck, Andreas","first_name":"Andreas","last_name":"Wieck"},{"id":"37763","full_name":"Reuter, Dirk","last_name":"Reuter","first_name":"Dirk"},{"full_name":"Müller, Kai","last_name":"Müller","first_name":"Kai"},{"full_name":"Finley, Jonathan J.","last_name":"Finley","first_name":"Jonathan J."}],"publication_identifier":{"issn":["2511-9044","2511-9044"]},"status":"public","year":"2022","title":"Quantum Dot Molecule Devices with Optical Control of Charge Status and Electronic Control of Coupling","publication_status":"published","date_updated":"2022-09-12T07:18:06Z"},{"status":"public","page":"3307-3308","publisher":"Springer Science and Business Media LLC","_id":"33383","user_id":"89838","volume":61,"citation":{"mla":"Bühlmeier, Judith, et al. “Correction to: Changes in Patterns of Eating Habits and Food Intake during the First German COVID-19 Lockdown: Results of a Cross-Sectional Online Survey.” <i>European Journal of Nutrition</i>, vol. 61, no. 6, Springer Science and Business Media LLC, 2022, pp. 3307–08, doi:<a href=\"https://doi.org/10.1007/s00394-022-02952-6\">10.1007/s00394-022-02952-6</a>.","bibtex":"@article{Bühlmeier_Frölich_Ludwig_Knoll-Pientka_Schmidt_Föcker_Libuda_2022, title={Correction to: Changes in patterns of eating habits and food intake during the first German COVID-19 lockdown: results of a cross-sectional online survey}, volume={61}, DOI={<a href=\"https://doi.org/10.1007/s00394-022-02952-6\">10.1007/s00394-022-02952-6</a>}, number={6}, journal={European Journal of Nutrition}, publisher={Springer Science and Business Media LLC}, author={Bühlmeier, Judith and Frölich, Stefanie and Ludwig, Christine and Knoll-Pientka, Nadja and Schmidt, Börge and Föcker, Manuel and Libuda, Lars}, year={2022}, pages={3307–3308} }","ama":"Bühlmeier J, Frölich S, Ludwig C, et al. 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Age at menarche relates to depression in adolescent girls: Comparing a clinical sample to the general pediatric population. <i>Journal of Affective Disorders</i>. 2022;318:103-112. doi:<a href=\"https://doi.org/10.1016/j.jad.2022.08.092\">10.1016/j.jad.2022.08.092</a>","ieee":"R. Hirtz <i>et al.</i>, “Age at menarche relates to depression in adolescent girls: Comparing a clinical sample to the general pediatric population,” <i>Journal of Affective Disorders</i>, vol. 318, pp. 103–112, 2022, doi: <a href=\"https://doi.org/10.1016/j.jad.2022.08.092\">10.1016/j.jad.2022.08.092</a>.","apa":"Hirtz, R., Libuda, L., Hinney, A., Föcker, M., Bühlmeier, J., Holterhus, P.-M., Kulle, A., Kiewert, C., Kuhnert, R., Cohrdes, C., Peters, T., Hebebrand, J., &#38; Grasemann, C. (2022). Age at menarche relates to depression in adolescent girls: Comparing a clinical sample to the general pediatric population. <i>Journal of Affective Disorders</i>, <i>318</i>, 103–112. <a href=\"https://doi.org/10.1016/j.jad.2022.08.092\">https://doi.org/10.1016/j.jad.2022.08.092</a>","chicago":"Hirtz, Raphael, Lars Libuda, Anke Hinney, Manuel Föcker, Judith Bühlmeier, Paul-Martin Holterhus, Alexandra Kulle, et al. “Age at Menarche Relates to Depression in Adolescent Girls: Comparing a Clinical Sample to the General Pediatric Population.” <i>Journal of Affective Disorders</i> 318 (2022): 103–12. <a href=\"https://doi.org/10.1016/j.jad.2022.08.092\">https://doi.org/10.1016/j.jad.2022.08.092</a>.","short":"R. Hirtz, L. Libuda, A. Hinney, M. Föcker, J. Bühlmeier, P.-M. Holterhus, A. Kulle, C. Kiewert, R. Kuhnert, C. Cohrdes, T. Peters, J. Hebebrand, C. Grasemann, Journal of Affective Disorders 318 (2022) 103–112."}},{"citation":{"mla":"Zhang, Ruiming, et al. “Second-Harmonic Generation in Atomically Thin &#60;mml:Math Xmlns:Mml=\"http://Www.W3.Org/1998/Math/MathML\"&#62;&#60;mml:Mn&#62;1&#60;/Mml:Mn&#62;&#60;mml:Mi&#62;T&#60;/Mml:Mi&#62;&#60;mml:Mtext&#62;−&#60;/Mml:Mtext&#62;&#60;mml:Mi&#62;Ti&#60;/Mml:Mi&#62;&#60;mml:Msub&#62;&#60;mml:Mrow&#62;&#60;mml:Mi&#62;Se&#60;/Mml:Mi&#62;&#60;/Mml:Mrow&#62;&#60;mml:Mn&#62;2&#60;/Mml:Mn&#62;&#60;/Mml:Msub&#62;&#60;/Mml:Math&#62; and Its Possible Origin from Charge Density Wave Transitions.” <i>Physical Review B</i>, vol. 105, no. 8, 085409, American Physical Society (APS), 2022, doi:<a href=\"https://doi.org/10.1103/physrevb.105.085409\">10.1103/physrevb.105.085409</a>.","ama":"Zhang R, Ruan W, Yu J, et al. Second-harmonic generation in atomically thin &#60;mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"&#62;&#60;mml:mn&#62;1&#60;/mml:mn&#62;&#60;mml:mi&#62;T&#60;/mml:mi&#62;&#60;mml:mtext&#62;−&#60;/mml:mtext&#62;&#60;mml:mi&#62;Ti&#60;/mml:mi&#62;&#60;mml:msub&#62;&#60;mml:mrow&#62;&#60;mml:mi&#62;Se&#60;/mml:mi&#62;&#60;/mml:mrow&#62;&#60;mml:mn&#62;2&#60;/mml:mn&#62;&#60;/mml:msub&#62;&#60;/mml:math&#62; and its possible origin from charge density wave transitions. <i>Physical Review B</i>. 2022;105(8). doi:<a href=\"https://doi.org/10.1103/physrevb.105.085409\">10.1103/physrevb.105.085409</a>","bibtex":"@article{Zhang_Ruan_Yu_Gao_Berger_Forró_Watanabe_Taniguchi_Ranjbar_Belosludov_et al._2022, title={Second-harmonic generation in atomically thin &#60;mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"&#62;&#60;mml:mn&#62;1&#60;/mml:mn&#62;&#60;mml:mi&#62;T&#60;/mml:mi&#62;&#60;mml:mtext&#62;−&#60;/mml:mtext&#62;&#60;mml:mi&#62;Ti&#60;/mml:mi&#62;&#60;mml:msub&#62;&#60;mml:mrow&#62;&#60;mml:mi&#62;Se&#60;/mml:mi&#62;&#60;/mml:mrow&#62;&#60;mml:mn&#62;2&#60;/mml:mn&#62;&#60;/mml:msub&#62;&#60;/mml:math&#62; and its possible origin from charge density wave transitions}, volume={105}, DOI={<a href=\"https://doi.org/10.1103/physrevb.105.085409\">10.1103/physrevb.105.085409</a>}, number={8085409}, journal={Physical Review B}, publisher={American Physical Society (APS)}, author={Zhang, Ruiming and Ruan, Wei and Yu, Junyao and Gao, Libo and Berger, Helmuth and Forró, László and Watanabe, Kenji and Taniguchi, Takashi and Ranjbar, Ahmad and Belosludov, Rodion V. and et al.}, year={2022} }","apa":"Zhang, R., Ruan, W., Yu, J., Gao, L., Berger, H., Forró, L., Watanabe, K., Taniguchi, T., Ranjbar, A., Belosludov, R. V., Kühne, T., Bahramy, M. S., &#38; Xi, X. (2022). Second-harmonic generation in atomically thin &#60;mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"&#62;&#60;mml:mn&#62;1&#60;/mml:mn&#62;&#60;mml:mi&#62;T&#60;/mml:mi&#62;&#60;mml:mtext&#62;−&#60;/mml:mtext&#62;&#60;mml:mi&#62;Ti&#60;/mml:mi&#62;&#60;mml:msub&#62;&#60;mml:mrow&#62;&#60;mml:mi&#62;Se&#60;/mml:mi&#62;&#60;/mml:mrow&#62;&#60;mml:mn&#62;2&#60;/mml:mn&#62;&#60;/mml:msub&#62;&#60;/mml:math&#62; and its possible origin from charge density wave transitions. <i>Physical Review B</i>, <i>105</i>(8), Article 085409. <a href=\"https://doi.org/10.1103/physrevb.105.085409\">https://doi.org/10.1103/physrevb.105.085409</a>","ieee":"R. Zhang <i>et al.</i>, “Second-harmonic generation in atomically thin &#60;mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"&#62;&#60;mml:mn&#62;1&#60;/mml:mn&#62;&#60;mml:mi&#62;T&#60;/mml:mi&#62;&#60;mml:mtext&#62;−&#60;/mml:mtext&#62;&#60;mml:mi&#62;Ti&#60;/mml:mi&#62;&#60;mml:msub&#62;&#60;mml:mrow&#62;&#60;mml:mi&#62;Se&#60;/mml:mi&#62;&#60;/mml:mrow&#62;&#60;mml:mn&#62;2&#60;/mml:mn&#62;&#60;/mml:msub&#62;&#60;/mml:math&#62; and its possible origin from charge density wave transitions,” <i>Physical Review B</i>, vol. 105, no. 8, Art. no. 085409, 2022, doi: <a href=\"https://doi.org/10.1103/physrevb.105.085409\">10.1103/physrevb.105.085409</a>.","short":"R. Zhang, W. Ruan, J. Yu, L. Gao, H. Berger, L. Forró, K. Watanabe, T. Taniguchi, A. Ranjbar, R.V. Belosludov, T. Kühne, M.S. Bahramy, X. Xi, Physical Review B 105 (2022).","chicago":"Zhang, Ruiming, Wei Ruan, Junyao Yu, Libo Gao, Helmuth Berger, László Forró, Kenji Watanabe, et al. “Second-Harmonic Generation in Atomically Thin &#60;mml:Math Xmlns:Mml=\"http://Www.W3.Org/1998/Math/MathML\"&#62;&#60;mml:Mn&#62;1&#60;/Mml:Mn&#62;&#60;mml:Mi&#62;T&#60;/Mml:Mi&#62;&#60;mml:Mtext&#62;−&#60;/Mml:Mtext&#62;&#60;mml:Mi&#62;Ti&#60;/Mml:Mi&#62;&#60;mml:Msub&#62;&#60;mml:Mrow&#62;&#60;mml:Mi&#62;Se&#60;/Mml:Mi&#62;&#60;/Mml:Mrow&#62;&#60;mml:Mn&#62;2&#60;/Mml:Mn&#62;&#60;/Mml:Msub&#62;&#60;/Mml:Math&#62; and Its Possible Origin from Charge Density Wave Transitions.” <i>Physical Review B</i> 105, no. 8 (2022). <a href=\"https://doi.org/10.1103/physrevb.105.085409\">https://doi.org/10.1103/physrevb.105.085409</a>."},"volume":105,"user_id":"71051","_id":"33679","publisher":"American Physical Society (APS)","status":"public","department":[{"_id":"613"}],"type":"journal_article","date_created":"2022-10-11T08:12:23Z","publication":"Physical Review B","issue":"8","doi":"10.1103/physrevb.105.085409","language":[{"iso":"eng"}],"article_number":"085409","intvolume":"       105","publication_status":"published","date_updated":"2022-10-11T08:12:43Z","author":[{"last_name":"Zhang","first_name":"Ruiming","full_name":"Zhang, Ruiming"},{"full_name":"Ruan, Wei","first_name":"Wei","last_name":"Ruan"},{"last_name":"Yu","first_name":"Junyao","full_name":"Yu, Junyao"},{"last_name":"Gao","first_name":"Libo","full_name":"Gao, Libo"},{"first_name":"Helmuth","last_name":"Berger","full_name":"Berger, Helmuth"},{"last_name":"Forró","first_name":"László","full_name":"Forró, László"},{"full_name":"Watanabe, Kenji","last_name":"Watanabe","first_name":"Kenji"},{"last_name":"Taniguchi","first_name":"Takashi","full_name":"Taniguchi, Takashi"},{"last_name":"Ranjbar","first_name":"Ahmad","full_name":"Ranjbar, Ahmad"},{"full_name":"Belosludov, Rodion V.","last_name":"Belosludov","first_name":"Rodion V."},{"id":"49079","full_name":"Kühne, Thomas","first_name":"Thomas","last_name":"Kühne"},{"full_name":"Bahramy, Mohammad Saeed","last_name":"Bahramy","first_name":"Mohammad Saeed"},{"last_name":"Xi","first_name":"Xiaoxiang","full_name":"Xi, Xiaoxiang"}],"publication_identifier":{"issn":["2469-9950","2469-9969"]},"year":"2022","title":"Second-harmonic generation in atomically thin <mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"><mml:mn>1</mml:mn><mml:mi>T</mml:mi><mml:mtext>−</mml:mtext><mml:mi>Ti</mml:mi><mml:msub><mml:mrow><mml:mi>Se</mml:mi></mml:mrow><mml:mn>2</mml:mn></mml:msub></mml:math> and its possible origin from charge density wave transitions"},{"title":"Electronic Structures of Group III–V Element Haeckelite Compounds: A Novel Family of Semiconductors, Dirac Semimetals, and Topological Insulators","year":"2022","publication_identifier":{"issn":["1616-301X","1616-3028"]},"author":[{"full_name":"Khazaei, Mohammad","first_name":"Mohammad","last_name":"Khazaei"},{"last_name":"Ranjbar","first_name":"Ahmad","full_name":"Ranjbar, Ahmad"},{"full_name":"Kang, Yoon‐Gu","last_name":"Kang","first_name":"Yoon‐Gu"},{"last_name":"Liang","first_name":"Yunye","full_name":"Liang, Yunye"},{"first_name":"Rasoul","last_name":"Khaledialidusti","full_name":"Khaledialidusti, Rasoul"},{"first_name":"Soungmin","last_name":"Bae","full_name":"Bae, Soungmin"},{"last_name":"Raebiger","first_name":"Hannes","full_name":"Raebiger, Hannes"},{"last_name":"Wang","first_name":"Vei","full_name":"Wang, Vei"},{"full_name":"Han, Myung Joon","last_name":"Han","first_name":"Myung Joon"},{"last_name":"Mizoguchi","first_name":"Hiroshi","full_name":"Mizoguchi, Hiroshi"},{"last_name":"Bahramy","first_name":"Mohammad S.","full_name":"Bahramy, Mohammad S."},{"id":"49079","last_name":"Kühne","first_name":"Thomas","full_name":"Kühne, Thomas"},{"last_name":"Belosludov","first_name":"Rodion V.","full_name":"Belosludov, Rodion V."},{"last_name":"Ohno","first_name":"Kaoru","full_name":"Ohno, Kaoru"},{"first_name":"Hideo","last_name":"Hosono","full_name":"Hosono, Hideo"}],"publication_status":"published","date_updated":"2022-10-11T08:15:28Z","intvolume":"        32","article_number":"2110930","language":[{"iso":"eng"}],"doi":"10.1002/adfm.202110930","issue":"20","publication":"Advanced Functional Materials","date_created":"2022-10-11T08:15:11Z","type":"journal_article","keyword":["Electrochemistry","Condensed Matter Physics","Biomaterials","Electronic","Optical and Magnetic Materials"],"department":[{"_id":"613"}],"status":"public","_id":"33682","publisher":"Wiley","user_id":"71051","volume":32,"citation":{"mla":"Khazaei, Mohammad, et al. “Electronic Structures of Group III–V Element Haeckelite Compounds: A Novel Family of Semiconductors, Dirac Semimetals, and Topological Insulators.” <i>Advanced Functional Materials</i>, vol. 32, no. 20, 2110930, Wiley, 2022, doi:<a href=\"https://doi.org/10.1002/adfm.202110930\">10.1002/adfm.202110930</a>.","ama":"Khazaei M, Ranjbar A, Kang Y, et al. Electronic Structures of Group III–V Element Haeckelite Compounds: A Novel Family of Semiconductors, Dirac Semimetals, and Topological Insulators. <i>Advanced Functional Materials</i>. 2022;32(20). doi:<a href=\"https://doi.org/10.1002/adfm.202110930\">10.1002/adfm.202110930</a>","bibtex":"@article{Khazaei_Ranjbar_Kang_Liang_Khaledialidusti_Bae_Raebiger_Wang_Han_Mizoguchi_et al._2022, title={Electronic Structures of Group III–V Element Haeckelite Compounds: A Novel Family of Semiconductors, Dirac Semimetals, and Topological Insulators}, volume={32}, DOI={<a href=\"https://doi.org/10.1002/adfm.202110930\">10.1002/adfm.202110930</a>}, number={202110930}, journal={Advanced Functional Materials}, publisher={Wiley}, author={Khazaei, Mohammad and Ranjbar, Ahmad and Kang, Yoon‐Gu and Liang, Yunye and Khaledialidusti, Rasoul and Bae, Soungmin and Raebiger, Hannes and Wang, Vei and Han, Myung Joon and Mizoguchi, Hiroshi and et al.}, year={2022} }","apa":"Khazaei, M., Ranjbar, A., Kang, Y., Liang, Y., Khaledialidusti, R., Bae, S., Raebiger, H., Wang, V., Han, M. J., Mizoguchi, H., Bahramy, M. S., Kühne, T., Belosludov, R. V., Ohno, K., &#38; Hosono, H. (2022). Electronic Structures of Group III–V Element Haeckelite Compounds: A Novel Family of Semiconductors, Dirac Semimetals, and Topological Insulators. <i>Advanced Functional Materials</i>, <i>32</i>(20), Article 2110930. <a href=\"https://doi.org/10.1002/adfm.202110930\">https://doi.org/10.1002/adfm.202110930</a>","ieee":"M. Khazaei <i>et al.</i>, “Electronic Structures of Group III–V Element Haeckelite Compounds: A Novel Family of Semiconductors, Dirac Semimetals, and Topological Insulators,” <i>Advanced Functional Materials</i>, vol. 32, no. 20, Art. no. 2110930, 2022, doi: <a href=\"https://doi.org/10.1002/adfm.202110930\">10.1002/adfm.202110930</a>.","chicago":"Khazaei, Mohammad, Ahmad Ranjbar, Yoon‐Gu Kang, Yunye Liang, Rasoul Khaledialidusti, Soungmin Bae, Hannes Raebiger, et al. “Electronic Structures of Group III–V Element Haeckelite Compounds: A Novel Family of Semiconductors, Dirac Semimetals, and Topological Insulators.” <i>Advanced Functional Materials</i> 32, no. 20 (2022). <a href=\"https://doi.org/10.1002/adfm.202110930\">https://doi.org/10.1002/adfm.202110930</a>.","short":"M. Khazaei, A. Ranjbar, Y. Kang, Y. Liang, R. Khaledialidusti, S. Bae, H. Raebiger, V. Wang, M.J. Han, H. Mizoguchi, M.S. Bahramy, T. Kühne, R.V. Belosludov, K. Ohno, H. Hosono, Advanced Functional Materials 32 (2022)."}},{"citation":{"ama":"Schulze Lammers B, López-Salas N, Stein Siena J, et al. Real-Space Identification of Non-Noble Single Atomic Catalytic Sites within Metal-Coordinated Supramolecular Networks. <i>ACS Nano</i>. 2022;16(9):14284-14296. doi:<a href=\"https://doi.org/10.1021/acsnano.2c04439\">10.1021/acsnano.2c04439</a>","bibtex":"@article{Schulze Lammers_López-Salas_Stein Siena_Mirhosseini_Yesilpinar_Heske_Kühne_Fuchs_Antonietti_Mönig_2022, title={Real-Space Identification of Non-Noble Single Atomic Catalytic Sites within Metal-Coordinated Supramolecular Networks}, volume={16}, DOI={<a href=\"https://doi.org/10.1021/acsnano.2c04439\">10.1021/acsnano.2c04439</a>}, number={9}, journal={ACS Nano}, publisher={American Chemical Society (ACS)}, author={Schulze Lammers, Bertram and López-Salas, Nieves and Stein Siena, Julya and Mirhosseini, Hossein and Yesilpinar, Damla and Heske, Julian Joachim and Kühne, Thomas and Fuchs, Harald and Antonietti, Markus and Mönig, Harry}, year={2022}, pages={14284–14296} }","mla":"Schulze Lammers, Bertram, et al. “Real-Space Identification of Non-Noble Single Atomic Catalytic Sites within Metal-Coordinated Supramolecular Networks.” <i>ACS Nano</i>, vol. 16, no. 9, American Chemical Society (ACS), 2022, pp. 14284–96, doi:<a href=\"https://doi.org/10.1021/acsnano.2c04439\">10.1021/acsnano.2c04439</a>.","short":"B. Schulze Lammers, N. López-Salas, J. Stein Siena, H. Mirhosseini, D. Yesilpinar, J.J. Heske, T. Kühne, H. Fuchs, M. Antonietti, H. Mönig, ACS Nano 16 (2022) 14284–14296.","chicago":"Schulze Lammers, Bertram, Nieves López-Salas, Julya Stein Siena, Hossein Mirhosseini, Damla Yesilpinar, Julian Joachim Heske, Thomas Kühne, Harald Fuchs, Markus Antonietti, and Harry Mönig. “Real-Space Identification of Non-Noble Single Atomic Catalytic Sites within Metal-Coordinated Supramolecular Networks.” <i>ACS Nano</i> 16, no. 9 (2022): 14284–96. <a href=\"https://doi.org/10.1021/acsnano.2c04439\">https://doi.org/10.1021/acsnano.2c04439</a>.","apa":"Schulze Lammers, B., López-Salas, N., Stein Siena, J., Mirhosseini, H., Yesilpinar, D., Heske, J. J., Kühne, T., Fuchs, H., Antonietti, M., &#38; Mönig, H. (2022). Real-Space Identification of Non-Noble Single Atomic Catalytic Sites within Metal-Coordinated Supramolecular Networks. <i>ACS Nano</i>, <i>16</i>(9), 14284–14296. <a href=\"https://doi.org/10.1021/acsnano.2c04439\">https://doi.org/10.1021/acsnano.2c04439</a>","ieee":"B. Schulze Lammers <i>et al.</i>, “Real-Space Identification of Non-Noble Single Atomic Catalytic Sites within Metal-Coordinated Supramolecular Networks,” <i>ACS Nano</i>, vol. 16, no. 9, pp. 14284–14296, 2022, doi: <a href=\"https://doi.org/10.1021/acsnano.2c04439\">10.1021/acsnano.2c04439</a>."},"status":"public","_id":"33676","publisher":"American Chemical Society (ACS)","page":"14284-14296","volume":16,"user_id":"71051","publication":"ACS Nano","issue":"9","date_created":"2022-10-11T08:09:28Z","department":[{"_id":"613"}],"type":"journal_article","keyword":["General Physics and Astronomy","General Engineering","General Materials Science"],"publication_identifier":{"issn":["1936-0851","1936-086X"]},"author":[{"full_name":"Schulze Lammers, Bertram","first_name":"Bertram","last_name":"Schulze Lammers"},{"full_name":"López-Salas, Nieves","last_name":"López-Salas","first_name":"Nieves"},{"first_name":"Julya","last_name":"Stein Siena","full_name":"Stein Siena, Julya"},{"id":"71051","last_name":"Mirhosseini","orcid":"0000-0001-6179-1545","first_name":"Hossein","full_name":"Mirhosseini, Hossein"},{"full_name":"Yesilpinar, Damla","last_name":"Yesilpinar","first_name":"Damla"},{"id":"53238","last_name":"Heske","first_name":"Julian Joachim","full_name":"Heske, Julian Joachim"},{"id":"49079","first_name":"Thomas","last_name":"Kühne","full_name":"Kühne, Thomas"},{"first_name":"Harald","last_name":"Fuchs","full_name":"Fuchs, Harald"},{"full_name":"Antonietti, Markus","first_name":"Markus","last_name":"Antonietti"},{"full_name":"Mönig, Harry","first_name":"Harry","last_name":"Mönig"}],"title":"Real-Space Identification of Non-Noble Single Atomic Catalytic Sites within Metal-Coordinated Supramolecular Networks","year":"2022","intvolume":"        16","publication_status":"published","date_updated":"2022-10-11T08:09:52Z","language":[{"iso":"eng"}],"doi":"10.1021/acsnano.2c04439"},{"user_id":"71051","_id":"33678","language":[{"iso":"eng"}],"publisher":"American Chemical Society (ACS)","date_updated":"2022-10-11T08:11:23Z","publication_status":"published","author":[{"id":"67235","full_name":"Henao Aristizabal, Andres","last_name":"Henao Aristizabal","first_name":"Andres"},{"full_name":"Gohar, Yomna","first_name":"Yomna","last_name":"Gohar"},{"last_name":"Whilhelm","first_name":"René","full_name":"Whilhelm, René"},{"id":"49079","full_name":"Kühne, Thomas","last_name":"Kühne","first_name":"Thomas"}],"title":"On the Role of Hydrogen Bond Strength and Charge Transfer of a Diels-Alder Reaction On-Water: Semiempirical and Free Energy Calculations.","status":"public","year":"2022","department":[{"_id":"613"}],"type":"preprint","date_created":"2022-10-11T08:11:10Z","abstract":[{"text":"<jats:p>Accelerated chemistry at the interface with water has received increasing attention. The mechanisms behind the enhanced reactivity On-Water are not yet clear. In this work we use a Langevin scheme in the spirit of second generation Car-Parrinello to accelerate the second-order density functional Tight-Binding (DFTB2) method in order to investigate the free energy of two Diels-Alder reaction On-Water: the cycloaddition between cyclopentadiene and ethyl cinnamate or thionocinnamate. The only difference between the reactants is the substitution of a carbonyl oxygen for a thiocarbonyl sulfur, making possible the distinction between them as strong and weak hydrogen-bond acceptors. We find a different mechanism for the reaction during the transition states and uncover the role of hydrogen bonds along with the reaction path. Our results suggest that acceleration of Diels-Alder reactions do not arise from an increased number of hydrogen bonds at the transition state and charge transfer plays a significant role. However, the presence of water and hydrogen-bonds is determinant for the catalysis of these reactions.</jats:p>","lang":"eng"}],"citation":{"mla":"Henao Aristizabal, Andres, et al. <i>On the Role of Hydrogen Bond Strength and Charge Transfer of a Diels-Alder Reaction On-Water: Semiempirical and Free Energy Calculations.</i> American Chemical Society (ACS), 2022.","bibtex":"@article{Henao Aristizabal_Gohar_Whilhelm_Kühne_2022, title={On the Role of Hydrogen Bond Strength and Charge Transfer of a Diels-Alder Reaction On-Water: Semiempirical and Free Energy Calculations.}, publisher={American Chemical Society (ACS)}, author={Henao Aristizabal, Andres and Gohar, Yomna and Whilhelm, René and Kühne, Thomas}, year={2022} }","ama":"Henao Aristizabal A, Gohar Y, Whilhelm R, Kühne T. On the Role of Hydrogen Bond Strength and Charge Transfer of a Diels-Alder Reaction On-Water: Semiempirical and Free Energy Calculations. Published online 2022.","ieee":"A. Henao Aristizabal, Y. Gohar, R. Whilhelm, and T. Kühne, “On the Role of Hydrogen Bond Strength and Charge Transfer of a Diels-Alder Reaction On-Water: Semiempirical and Free Energy Calculations.” American Chemical Society (ACS), 2022.","apa":"Henao Aristizabal, A., Gohar, Y., Whilhelm, R., &#38; Kühne, T. (2022). <i>On the Role of Hydrogen Bond Strength and Charge Transfer of a Diels-Alder Reaction On-Water: Semiempirical and Free Energy Calculations.</i> American Chemical Society (ACS).","chicago":"Henao Aristizabal, Andres, Yomna Gohar, René Whilhelm, and Thomas Kühne. “On the Role of Hydrogen Bond Strength and Charge Transfer of a Diels-Alder Reaction On-Water: Semiempirical and Free Energy Calculations.” American Chemical Society (ACS), 2022.","short":"A. Henao Aristizabal, Y. Gohar, R. Whilhelm, T. Kühne, (2022)."}},{"citation":{"bibtex":"@article{Khajehpasha_Finkler_Kühne_Ghasemi_2022, title={CENT2: Improved charge equilibration via neural network technique}, volume={105}, DOI={<a href=\"https://doi.org/10.1103/physrevb.105.144106\">10.1103/physrevb.105.144106</a>}, number={14144106}, journal={Physical Review B}, publisher={American Physical Society (APS)}, author={Khajehpasha, Ehsan Rahmatizad and Finkler, Jonas A. and Kühne, Thomas and Ghasemi, Alireza}, year={2022} }","ama":"Khajehpasha ER, Finkler JA, Kühne T, Ghasemi A. CENT2: Improved charge equilibration via neural network technique. <i>Physical Review B</i>. 2022;105(14). doi:<a href=\"https://doi.org/10.1103/physrevb.105.144106\">10.1103/physrevb.105.144106</a>","mla":"Khajehpasha, Ehsan Rahmatizad, et al. “CENT2: Improved Charge Equilibration via Neural Network Technique.” <i>Physical Review B</i>, vol. 105, no. 14, 144106, American Physical Society (APS), 2022, doi:<a href=\"https://doi.org/10.1103/physrevb.105.144106\">10.1103/physrevb.105.144106</a>.","chicago":"Khajehpasha, Ehsan Rahmatizad, Jonas A. Finkler, Thomas Kühne, and Alireza Ghasemi. “CENT2: Improved Charge Equilibration via Neural Network Technique.” <i>Physical Review B</i> 105, no. 14 (2022). <a href=\"https://doi.org/10.1103/physrevb.105.144106\">https://doi.org/10.1103/physrevb.105.144106</a>.","short":"E.R. Khajehpasha, J.A. Finkler, T. Kühne, A. Ghasemi, Physical Review B 105 (2022).","ieee":"E. R. Khajehpasha, J. A. Finkler, T. Kühne, and A. Ghasemi, “CENT2: Improved charge equilibration via neural network technique,” <i>Physical Review B</i>, vol. 105, no. 14, Art. no. 144106, 2022, doi: <a href=\"https://doi.org/10.1103/physrevb.105.144106\">10.1103/physrevb.105.144106</a>.","apa":"Khajehpasha, E. R., Finkler, J. A., Kühne, T., &#38; Ghasemi, A. (2022). CENT2: Improved charge equilibration via neural network technique. <i>Physical Review B</i>, <i>105</i>(14), Article 144106. <a href=\"https://doi.org/10.1103/physrevb.105.144106\">https://doi.org/10.1103/physrevb.105.144106</a>"},"status":"public","_id":"33680","publisher":"American Physical Society (APS)","user_id":"71051","volume":105,"issue":"14","publication":"Physical Review B","date_created":"2022-10-11T08:13:47Z","type":"journal_article","department":[{"_id":"613"}],"year":"2022","title":"CENT2: Improved charge equilibration via neural network technique","publication_identifier":{"issn":["2469-9950","2469-9969"]},"author":[{"full_name":"Khajehpasha, Ehsan Rahmatizad","last_name":"Khajehpasha","first_name":"Ehsan Rahmatizad"},{"first_name":"Jonas A.","last_name":"Finkler","full_name":"Finkler, Jonas A."},{"id":"49079","full_name":"Kühne, Thomas","last_name":"Kühne","first_name":"Thomas"},{"id":"77282","full_name":"Ghasemi, Alireza","first_name":"Alireza","last_name":"Ghasemi"}],"publication_status":"published","date_updated":"2022-10-11T08:14:01Z","intvolume":"       105","article_number":"144106","language":[{"iso":"eng"}],"doi":"10.1103/physrevb.105.144106"},{"publication":"ACS Applied Materials &amp; Interfaces","issue":"29","department":[{"_id":"613"}],"type":"journal_article","keyword":["General Materials Science"],"date_created":"2022-10-11T08:18:45Z","intvolume":"        14","publication_status":"published","date_updated":"2022-10-11T08:19:07Z","publication_identifier":{"issn":["1944-8244","1944-8252"]},"author":[{"full_name":"Elizabeth, Amala","first_name":"Amala","last_name":"Elizabeth"},{"full_name":"Sahoo, Sudhir K.","last_name":"Sahoo","first_name":"Sudhir K."},{"full_name":"Phirke, Himanshu","first_name":"Himanshu","last_name":"Phirke"},{"full_name":"Kodalle, Tim","first_name":"Tim","last_name":"Kodalle"},{"full_name":"Kühne, Thomas","last_name":"Kühne","first_name":"Thomas","id":"49079"},{"full_name":"Audinot, Jean-Nicolas","first_name":"Jean-Nicolas","last_name":"Audinot"},{"first_name":"Tom","last_name":"Wirtz","full_name":"Wirtz, Tom"},{"first_name":"Alex","last_name":"Redinger","full_name":"Redinger, Alex"},{"first_name":"Christian A.","last_name":"Kaufmann","full_name":"Kaufmann, Christian A."},{"id":"71051","full_name":"Mirhosseini, Hossein","first_name":"Hossein","orcid":"0000-0001-6179-1545","last_name":"Mirhosseini"},{"first_name":"Harry","last_name":"Mönig","full_name":"Mönig, Harry"}],"year":"2022","title":"Surface Passivation and Detrimental Heat-Induced Diffusion Effects in RbF-Treated Cu(In,Ga)Se<sub>2</sub> Solar Cell Absorbers","doi":"10.1021/acsami.2c08257","language":[{"iso":"eng"}],"citation":{"chicago":"Elizabeth, Amala, Sudhir K. Sahoo, Himanshu Phirke, Tim Kodalle, Thomas Kühne, Jean-Nicolas Audinot, Tom Wirtz, et al. “Surface Passivation and Detrimental Heat-Induced Diffusion Effects in RbF-Treated Cu(In,Ga)Se<sub>2</sub> Solar Cell Absorbers.” <i>ACS Applied Materials &#38;amp; Interfaces</i> 14, no. 29 (2022): 34101–12. <a href=\"https://doi.org/10.1021/acsami.2c08257\">https://doi.org/10.1021/acsami.2c08257</a>.","short":"A. Elizabeth, S.K. Sahoo, H. Phirke, T. Kodalle, T. Kühne, J.-N. Audinot, T. Wirtz, A. Redinger, C.A. Kaufmann, H. Mirhosseini, H. Mönig, ACS Applied Materials &#38;amp; Interfaces 14 (2022) 34101–34112.","apa":"Elizabeth, A., Sahoo, S. K., Phirke, H., Kodalle, T., Kühne, T., Audinot, J.-N., Wirtz, T., Redinger, A., Kaufmann, C. A., Mirhosseini, H., &#38; Mönig, H. (2022). Surface Passivation and Detrimental Heat-Induced Diffusion Effects in RbF-Treated Cu(In,Ga)Se<sub>2</sub> Solar Cell Absorbers. <i>ACS Applied Materials &#38;amp; Interfaces</i>, <i>14</i>(29), 34101–34112. <a href=\"https://doi.org/10.1021/acsami.2c08257\">https://doi.org/10.1021/acsami.2c08257</a>","ieee":"A. Elizabeth <i>et al.</i>, “Surface Passivation and Detrimental Heat-Induced Diffusion Effects in RbF-Treated Cu(In,Ga)Se<sub>2</sub> Solar Cell Absorbers,” <i>ACS Applied Materials &#38;amp; Interfaces</i>, vol. 14, no. 29, pp. 34101–34112, 2022, doi: <a href=\"https://doi.org/10.1021/acsami.2c08257\">10.1021/acsami.2c08257</a>.","ama":"Elizabeth A, Sahoo SK, Phirke H, et al. 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H., Cha, J., Jekal, S., Hong, S. C., Lee, H. H., Park, S., Lee, H., Park, J., Lee, S., Steinrück, H.-G., Mehta, A., Wang, S. X., &#38; Hong, J. (2022). Giant Orbital Anisotropy with Strong Spin–Orbit Coupling Established at the Pseudomorphic Interface of the Co/Pd Superlattice. <i>Advanced Science</i>, <i>9</i>(24), 2201749. <a href=\"https://doi.org/10.1002/advs.202201749\">https://doi.org/10.1002/advs.202201749</a>","ieee":"S. Kim <i>et al.</i>, “Giant Orbital Anisotropy with Strong Spin–Orbit Coupling Established at the Pseudomorphic Interface of the Co/Pd Superlattice,” <i>Advanced Science</i>, vol. 9, no. 24, p. 2201749, 2022, doi: <a href=\"https://doi.org/10.1002/advs.202201749\">10.1002/advs.202201749</a>.","chicago":"Kim, Sanghoon, Sachin Pathak, Sonny H. Rhim, Jongin Cha, Soyoung Jekal, Soon Cheol Hong, Hyun Hwi Lee, et al. “Giant Orbital Anisotropy with Strong Spin–Orbit Coupling Established at the Pseudomorphic Interface of the Co/Pd Superlattice.” <i>Advanced Science</i> 9, no. 24 (2022): 2201749. <a href=\"https://doi.org/10.1002/advs.202201749\">https://doi.org/10.1002/advs.202201749</a>.","short":"S. Kim, S. Pathak, S.H. Rhim, J. Cha, S. Jekal, S.C. Hong, H.H. Lee, S. Park, H. Lee, J. Park, S. Lee, H.-G. Steinrück, A. Mehta, S.X. Wang, J. Hong, Advanced Science 9 (2022) 2201749.","mla":"Kim, Sanghoon, et al. “Giant Orbital Anisotropy with Strong Spin–Orbit Coupling Established at the Pseudomorphic Interface of the Co/Pd Superlattice.” <i>Advanced Science</i>, vol. 9, no. 24, Wiley, 2022, p. 2201749, doi:<a href=\"https://doi.org/10.1002/advs.202201749\">10.1002/advs.202201749</a>.","ama":"Kim S, Pathak S, Rhim SH, et al. Giant Orbital Anisotropy with Strong Spin–Orbit Coupling Established at the Pseudomorphic Interface of the Co/Pd Superlattice. <i>Advanced Science</i>. 2022;9(24):2201749. doi:<a href=\"https://doi.org/10.1002/advs.202201749\">10.1002/advs.202201749</a>","bibtex":"@article{Kim_Pathak_Rhim_Cha_Jekal_Hong_Lee_Park_Lee_Park_et al._2022, title={Giant Orbital Anisotropy with Strong Spin–Orbit Coupling Established at the Pseudomorphic Interface of the Co/Pd Superlattice}, volume={9}, DOI={<a href=\"https://doi.org/10.1002/advs.202201749\">10.1002/advs.202201749</a>}, number={24}, journal={Advanced Science}, publisher={Wiley}, author={Kim, Sanghoon and Pathak, Sachin and Rhim, Sonny H. and Cha, Jongin and Jekal, Soyoung and Hong, Soon Cheol and Lee, Hyun Hwi and Park, Sung‐Hun and Lee, Han‐Koo and Park, Jae‐Hoon and et al.}, year={2022}, pages={2201749} }"},"language":[{"iso":"eng"}],"doi":"10.1002/advs.202201749","publication_identifier":{"issn":["2198-3844","2198-3844"]},"author":[{"full_name":"Kim, Sanghoon","last_name":"Kim","first_name":"Sanghoon"},{"first_name":"Sachin","last_name":"Pathak","full_name":"Pathak, Sachin"},{"full_name":"Rhim, Sonny H.","first_name":"Sonny H.","last_name":"Rhim"},{"full_name":"Cha, Jongin","first_name":"Jongin","last_name":"Cha"},{"first_name":"Soyoung","last_name":"Jekal","full_name":"Jekal, Soyoung"},{"first_name":"Soon Cheol","last_name":"Hong","full_name":"Hong, Soon Cheol"},{"last_name":"Lee","first_name":"Hyun Hwi","full_name":"Lee, Hyun Hwi"},{"first_name":"Sung‐Hun","last_name":"Park","full_name":"Park, Sung‐Hun"},{"last_name":"Lee","first_name":"Han‐Koo","full_name":"Lee, Han‐Koo"},{"full_name":"Park, Jae‐Hoon","first_name":"Jae‐Hoon","last_name":"Park"},{"full_name":"Lee, Soogil","last_name":"Lee","first_name":"Soogil"},{"orcid":"0000-0001-6373-0877","last_name":"Steinrück","first_name":"Hans-Georg","full_name":"Steinrück, Hans-Georg","id":"84268"},{"first_name":"Apurva","last_name":"Mehta","full_name":"Mehta, Apurva"},{"full_name":"Wang, Shan X.","first_name":"Shan X.","last_name":"Wang"},{"first_name":"Jongill","last_name":"Hong","full_name":"Hong, Jongill"}],"year":"2022","title":"Giant Orbital Anisotropy with Strong Spin–Orbit Coupling Established at the Pseudomorphic Interface of the Co/Pd Superlattice","intvolume":"         9","publication_status":"published","date_updated":"2022-10-20T12:25:35Z","date_created":"2022-10-20T12:23:54Z","department":[{"_id":"633"}],"type":"journal_article","keyword":["General Physics and Astronomy","General Engineering","Biochemistry","Genetics and Molecular Biology (miscellaneous)","General Materials Science","General Chemical Engineering","Medicine (miscellaneous)"],"issue":"24","publication":"Advanced Science"},{"doi":"10.1038/s41398-022-02018-5","language":[{"iso":"eng"}],"article_number":"241","intvolume":"        12","date_updated":"2022-10-26T15:49:24Z","publication_status":"published","publication_identifier":{"issn":["2158-3188"]},"author":[{"last_name":"Zheng","first_name":"Yiran","full_name":"Zheng, Yiran"},{"first_name":"Luisa Sophie","last_name":"Rajcsanyi","full_name":"Rajcsanyi, Luisa Sophie"},{"first_name":"Beate","last_name":"Herpertz-Dahlmann","full_name":"Herpertz-Dahlmann, Beate"},{"first_name":"Jochen","last_name":"Seitz","full_name":"Seitz, Jochen"},{"full_name":"de Zwaan, Martina","last_name":"de Zwaan","first_name":"Martina"},{"full_name":"Herzog, Wolfgang","last_name":"Herzog","first_name":"Wolfgang"},{"last_name":"Ehrlich","first_name":"Stefan","full_name":"Ehrlich, Stefan"},{"last_name":"Zipfel","first_name":"Stephan","full_name":"Zipfel, Stephan"},{"last_name":"Giel","first_name":"Katrin","full_name":"Giel, Katrin"},{"full_name":"Egberts, Karin","last_name":"Egberts","first_name":"Karin"},{"full_name":"Burghardt, Roland","first_name":"Roland","last_name":"Burghardt"},{"full_name":"Föcker, Manuel","last_name":"Föcker","first_name":"Manuel"},{"first_name":"Saad","last_name":"Al-Lahham","full_name":"Al-Lahham, Saad"},{"full_name":"Peters, Triinu","first_name":"Triinu","last_name":"Peters"},{"full_name":"Libuda, Lars","first_name":"Lars","last_name":"Libuda","orcid":"0000-0003-1603-3133","id":"88682"},{"full_name":"Antel, Jochen","last_name":"Antel","first_name":"Jochen"},{"first_name":"Johannes","last_name":"Hebebrand","full_name":"Hebebrand, Johannes"},{"first_name":"Anke","last_name":"Hinney","full_name":"Hinney, Anke"}],"year":"2022","title":"PTBP2 – a gene with relevance for both Anorexia nervosa and body weight regulation","department":[{"_id":"35"}],"type":"journal_article","keyword":["Biological Psychiatry","Cellular and Molecular Neuroscience","Psychiatry and Mental health"],"date_created":"2022-07-06T15:14:13Z","abstract":[{"lang":"eng","text":"<jats:title>Abstract</jats:title><jats:p>Genetic factors are relevant for both eating disorders and body weight regulation. A recent genome-wide association study (GWAS) for anorexia nervosa (AN) detected eight genome-wide significant chromosomal loci. One of these loci, rs10747478, was also genome-wide and significantly associated with body mass index (BMI). The nearest coding gene is the Polypyrimidine Tract Binding Protein 2 gene (<jats:italic>PTBP2</jats:italic>). To detect mutations in <jats:italic>PTBP2</jats:italic>, Sanger sequencing of the coding region was performed in 192 female patients with AN (acute or recovered) and 191 children or adolescents with (extreme) obesity. Twenty-five variants were identified. Twenty-three of these were predicted to be pathogenic or functionally relevant in at least one in silico tool. Two novel synonymous variants (p.Ala77Ala and p.Asp195Asp), one intronic SNP (rs188987764), and the intronic deletion (rs561340981) located in the highly conserved region of <jats:italic>PTBP2</jats:italic> may have functional consequences. Ten of 20 genes interacting with <jats:italic>PTBP2</jats:italic> were studied for their impact on body weight regulation based on either previous functional studies or GWAS hits for body weight or BMI. In a GWAS for BMI (Pulit et al. 2018), the number of genome-wide significant associations at the <jats:italic>PTBP2</jats:italic> locus was different between males (60 variants) and females (two variants, one of these also significant in males). More than 65% of these 61 variants showed differences in the effect size pertaining to BMI between sexes (absolute value of <jats:italic>Z</jats:italic>-score &gt;2, two-sided <jats:italic>p</jats:italic> &lt; 0.05). One LD block overlapping 5′UTR and all coding regions of <jats:italic>PTBP2</jats:italic> comprises 56 significant variants in males. The analysis based on sex-stratified BMI GWAS summary statistics implies that <jats:italic>PTBP2</jats:italic> may have a more pronounced effect on body weight regulation in males than in females.</jats:p>"}],"publication":"Translational Psychiatry","issue":"1","volume":12,"user_id":"88682","publisher":"Springer Science and Business Media LLC","_id":"32326","status":"public","citation":{"bibtex":"@article{Zheng_Rajcsanyi_Herpertz-Dahlmann_Seitz_de Zwaan_Herzog_Ehrlich_Zipfel_Giel_Egberts_et al._2022, title={PTBP2 – a gene with relevance for both Anorexia nervosa and body weight regulation}, volume={12}, DOI={<a href=\"https://doi.org/10.1038/s41398-022-02018-5\">10.1038/s41398-022-02018-5</a>}, number={1241}, journal={Translational Psychiatry}, publisher={Springer Science and Business Media LLC}, author={Zheng, Yiran and Rajcsanyi, Luisa Sophie and Herpertz-Dahlmann, Beate and Seitz, Jochen and de Zwaan, Martina and Herzog, Wolfgang and Ehrlich, Stefan and Zipfel, Stephan and Giel, Katrin and Egberts, Karin and et al.}, year={2022} }","ama":"Zheng Y, Rajcsanyi LS, Herpertz-Dahlmann B, et al. PTBP2 – a gene with relevance for both Anorexia nervosa and body weight regulation. <i>Translational Psychiatry</i>. 2022;12(1). doi:<a href=\"https://doi.org/10.1038/s41398-022-02018-5\">10.1038/s41398-022-02018-5</a>","mla":"Zheng, Yiran, et al. “PTBP2 – a Gene with Relevance for Both Anorexia Nervosa and Body Weight Regulation.” <i>Translational Psychiatry</i>, vol. 12, no. 1, 241, Springer Science and Business Media LLC, 2022, doi:<a href=\"https://doi.org/10.1038/s41398-022-02018-5\">10.1038/s41398-022-02018-5</a>.","short":"Y. Zheng, L.S. Rajcsanyi, B. Herpertz-Dahlmann, J. Seitz, M. de Zwaan, W. Herzog, S. Ehrlich, S. Zipfel, K. Giel, K. Egberts, R. Burghardt, M. Föcker, S. Al-Lahham, T. Peters, L. Libuda, J. Antel, J. Hebebrand, A. Hinney, Translational Psychiatry 12 (2022).","chicago":"Zheng, Yiran, Luisa Sophie Rajcsanyi, Beate Herpertz-Dahlmann, Jochen Seitz, Martina de Zwaan, Wolfgang Herzog, Stefan Ehrlich, et al. “PTBP2 – a Gene with Relevance for Both Anorexia Nervosa and Body Weight Regulation.” <i>Translational Psychiatry</i> 12, no. 1 (2022). <a href=\"https://doi.org/10.1038/s41398-022-02018-5\">https://doi.org/10.1038/s41398-022-02018-5</a>.","ieee":"Y. Zheng <i>et al.</i>, “PTBP2 – a gene with relevance for both Anorexia nervosa and body weight regulation,” <i>Translational Psychiatry</i>, vol. 12, no. 1, Art. no. 241, 2022, doi: <a href=\"https://doi.org/10.1038/s41398-022-02018-5\">10.1038/s41398-022-02018-5</a>.","apa":"Zheng, Y., Rajcsanyi, L. S., Herpertz-Dahlmann, B., Seitz, J., de Zwaan, M., Herzog, W., Ehrlich, S., Zipfel, S., Giel, K., Egberts, K., Burghardt, R., Föcker, M., Al-Lahham, S., Peters, T., Libuda, L., Antel, J., Hebebrand, J., &#38; Hinney, A. (2022). PTBP2 – a gene with relevance for both Anorexia nervosa and body weight regulation. <i>Translational Psychiatry</i>, <i>12</i>(1), Article 241. <a href=\"https://doi.org/10.1038/s41398-022-02018-5\">https://doi.org/10.1038/s41398-022-02018-5</a>"}},{"_id":"32328","language":[{"iso":"eng"}],"publisher":"Springer Science and Business Media LLC","user_id":"88682","doi":"10.1007/s00394-022-02919-7","year":"2022","status":"public","title":"Changes in patterns of eating habits and food intake during the first German COVID-19 lockdown: results of a cross-sectional online survey","publication_identifier":{"issn":["1436-6207","1436-6215"]},"author":[{"full_name":"Bühlmeier, Judith","last_name":"Bühlmeier","first_name":"Judith","id":"89838"},{"last_name":"Frölich","first_name":"Stefanie","full_name":"Frölich, Stefanie"},{"last_name":"Ludwig","first_name":"Christine","full_name":"Ludwig, Christine"},{"first_name":"Nadja","last_name":"Knoll-Pientka","full_name":"Knoll-Pientka, Nadja"},{"first_name":"Börge","last_name":"Schmidt","full_name":"Schmidt, Börge"},{"full_name":"Föcker, Manuel","last_name":"Föcker","first_name":"Manuel"},{"id":"88682","full_name":"Libuda, Lars","first_name":"Lars","last_name":"Libuda","orcid":"0000-0003-1603-3133"}],"publication_status":"published","date_updated":"2022-10-26T15:48:54Z","date_created":"2022-07-06T15:15:01Z","type":"journal_article","keyword":["Nutrition and Dietetics","Medicine (miscellaneous)"],"department":[{"_id":"35"}],"publication":"European Journal of Nutrition","citation":{"ieee":"J. Bühlmeier <i>et al.</i>, “Changes in patterns of eating habits and food intake during the first German COVID-19 lockdown: results of a cross-sectional online survey,” <i>European Journal of Nutrition</i>, 2022, doi: <a href=\"https://doi.org/10.1007/s00394-022-02919-7\">10.1007/s00394-022-02919-7</a>.","apa":"Bühlmeier, J., Frölich, S., Ludwig, C., Knoll-Pientka, N., Schmidt, B., Föcker, M., &#38; Libuda, L. (2022). Changes in patterns of eating habits and food intake during the first German COVID-19 lockdown: results of a cross-sectional online survey. <i>European Journal of Nutrition</i>. <a href=\"https://doi.org/10.1007/s00394-022-02919-7\">https://doi.org/10.1007/s00394-022-02919-7</a>","short":"J. Bühlmeier, S. Frölich, C. Ludwig, N. Knoll-Pientka, B. Schmidt, M. Föcker, L. Libuda, European Journal of Nutrition (2022).","chicago":"Bühlmeier, Judith, Stefanie Frölich, Christine Ludwig, Nadja Knoll-Pientka, Börge Schmidt, Manuel Föcker, and Lars Libuda. “Changes in Patterns of Eating Habits and Food Intake during the First German COVID-19 Lockdown: Results of a Cross-Sectional Online Survey.” <i>European Journal of Nutrition</i>, 2022. <a href=\"https://doi.org/10.1007/s00394-022-02919-7\">https://doi.org/10.1007/s00394-022-02919-7</a>.","mla":"Bühlmeier, Judith, et al. “Changes in Patterns of Eating Habits and Food Intake during the First German COVID-19 Lockdown: Results of a Cross-Sectional Online Survey.” <i>European Journal of Nutrition</i>, Springer Science and Business Media LLC, 2022, doi:<a href=\"https://doi.org/10.1007/s00394-022-02919-7\">10.1007/s00394-022-02919-7</a>.","bibtex":"@article{Bühlmeier_Frölich_Ludwig_Knoll-Pientka_Schmidt_Föcker_Libuda_2022, title={Changes in patterns of eating habits and food intake during the first German COVID-19 lockdown: results of a cross-sectional online survey}, DOI={<a href=\"https://doi.org/10.1007/s00394-022-02919-7\">10.1007/s00394-022-02919-7</a>}, journal={European Journal of Nutrition}, publisher={Springer Science and Business Media LLC}, author={Bühlmeier, Judith and Frölich, Stefanie and Ludwig, Christine and Knoll-Pientka, Nadja and Schmidt, Börge and Föcker, Manuel and Libuda, Lars}, year={2022} }","ama":"Bühlmeier J, Frölich S, Ludwig C, et al. Changes in patterns of eating habits and food intake during the first German COVID-19 lockdown: results of a cross-sectional online survey. <i>European Journal of Nutrition</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1007/s00394-022-02919-7\">10.1007/s00394-022-02919-7</a>"},"abstract":[{"lang":"eng","text":"<jats:title>Abstract</jats:title><jats:sec>\r\n              <jats:title>Purpose</jats:title>\r\n              <jats:p>The COVID-19 pandemic and public measures have a direct impact on the nutrition situation; studies show changes in food consumption, eating behavior or body weight but complex pattern analyses of changes rarely exist.</jats:p>\r\n            </jats:sec><jats:sec>\r\n              <jats:title>Methods</jats:title>\r\n              <jats:p>During the first German lockdown, a web-based survey was conducted among adults. It included 33 questions about changes in food intake, eating habits and physical activity, as well as anthropometrics and sociodemographic factors. Patterns of change were calculated based on changes in food intake and eating habits using two-step cluster analysis. To identify influencing factors for assignment to the patterns of change, binary logistic regression analyses were performed.</jats:p>\r\n            </jats:sec><jats:sec>\r\n              <jats:title>Results</jats:title>\r\n              <jats:p>Data from 2103 participants (81% female, 40 ± 14 years) were considered for analysis. Increased stockpiling, cooking, and variation in preparation was reported by 50–70%. The constant pattern (C-P, 36%) reported little change besides the above. The health-oriented pattern (HO-P; 37%) reported eating more healthy foods, avoiding unhealthy foods, and eating less and less frequently. The emotional-driven pattern (ED-P; 28%) exhibits higher influence of emotions on eating behavior, less avoidance of unhealthy foods, and increased consumption of sweets, pastries, and alcohol. The odds of changing eating behavior either to HO-P or ED-P were higher in women, people with migration background, younger participants, and increased with BMI categories.</jats:p>\r\n            </jats:sec><jats:sec>\r\n              <jats:title>Conclusion</jats:title>\r\n              <jats:p>Both, the ED-P and HO-P, exhibit distinctive reactions in eating habits and food intake when dealing with a distressing experience. In subgroups, these may lead to disturbances in eating behavior and increase the risk for eating disorders and obesity.</jats:p>\r\n            </jats:sec>"}]}]
