Direct observation of charge separation in an organic light harvesting system by femtosecond time-resolved XPS

Understanding ultrafast dynamics of photon-to-charge conversion is paramount for optimising light-harvesting systems. Here, the authors use femtosecond time-resolved X-ray photoemission spectroscopy to reveal specific charge separation sites and monitor free charge formation in a model donor-accepto...

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Autores principales: Friedrich Roth, Mario Borgwardt, Lukas Wenthaus, Johannes Mahl, Steffen Palutke, Günter Brenner, Giuseppe Mercurio, Serguei Molodtsov, Wilfried Wurth, Oliver Gessner, Wolfgang Eberhardt
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/c62c08fb63284b01b672b786d7ca25a7
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spelling oai:doaj.org-article:c62c08fb63284b01b672b786d7ca25a72021-12-02T14:21:30ZDirect observation of charge separation in an organic light harvesting system by femtosecond time-resolved XPS10.1038/s41467-021-21454-32041-1723https://doaj.org/article/c62c08fb63284b01b672b786d7ca25a72021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21454-3https://doaj.org/toc/2041-1723Understanding ultrafast dynamics of photon-to-charge conversion is paramount for optimising light-harvesting systems. Here, the authors use femtosecond time-resolved X-ray photoemission spectroscopy to reveal specific charge separation sites and monitor free charge formation in a model donor-acceptor system.Friedrich RothMario BorgwardtLukas WenthausJohannes MahlSteffen PalutkeGünter BrennerGiuseppe MercurioSerguei MolodtsovWilfried WurthOliver GessnerWolfgang EberhardtNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Friedrich Roth
Mario Borgwardt
Lukas Wenthaus
Johannes Mahl
Steffen Palutke
Günter Brenner
Giuseppe Mercurio
Serguei Molodtsov
Wilfried Wurth
Oliver Gessner
Wolfgang Eberhardt
Direct observation of charge separation in an organic light harvesting system by femtosecond time-resolved XPS
description Understanding ultrafast dynamics of photon-to-charge conversion is paramount for optimising light-harvesting systems. Here, the authors use femtosecond time-resolved X-ray photoemission spectroscopy to reveal specific charge separation sites and monitor free charge formation in a model donor-acceptor system.
format article
author Friedrich Roth
Mario Borgwardt
Lukas Wenthaus
Johannes Mahl
Steffen Palutke
Günter Brenner
Giuseppe Mercurio
Serguei Molodtsov
Wilfried Wurth
Oliver Gessner
Wolfgang Eberhardt
author_facet Friedrich Roth
Mario Borgwardt
Lukas Wenthaus
Johannes Mahl
Steffen Palutke
Günter Brenner
Giuseppe Mercurio
Serguei Molodtsov
Wilfried Wurth
Oliver Gessner
Wolfgang Eberhardt
author_sort Friedrich Roth
title Direct observation of charge separation in an organic light harvesting system by femtosecond time-resolved XPS
title_short Direct observation of charge separation in an organic light harvesting system by femtosecond time-resolved XPS
title_full Direct observation of charge separation in an organic light harvesting system by femtosecond time-resolved XPS
title_fullStr Direct observation of charge separation in an organic light harvesting system by femtosecond time-resolved XPS
title_full_unstemmed Direct observation of charge separation in an organic light harvesting system by femtosecond time-resolved XPS
title_sort direct observation of charge separation in an organic light harvesting system by femtosecond time-resolved xps
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/c62c08fb63284b01b672b786d7ca25a7
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