X-ray transient absorption reveals the 1Au (nπ*) state of pyrazine in electronic relaxation

Radiationless relaxation is ubiquitous in natural processes and often involves excited states that are difficult to observe. Here the authors, combining X-ray transient absorption spectroscopy and computations, provide insight into the photoinduced dynamics in pyrazine and the involvement of an opti...

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Autores principales: Valeriu Scutelnic, Shota Tsuru, Mátyás Pápai, Zheyue Yang, Michael Epshtein, Tian Xue, Eric Haugen, Yuki Kobayashi, Anna I. Krylov, Klaus B. Møller, Sonia Coriani, Stephen R. Leone
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/e298089c6d1247a986e5ca1f47b760ae
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spelling oai:doaj.org-article:e298089c6d1247a986e5ca1f47b760ae2021-12-02T15:10:40ZX-ray transient absorption reveals the 1Au (nπ*) state of pyrazine in electronic relaxation10.1038/s41467-021-25045-02041-1723https://doaj.org/article/e298089c6d1247a986e5ca1f47b760ae2021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25045-0https://doaj.org/toc/2041-1723Radiationless relaxation is ubiquitous in natural processes and often involves excited states that are difficult to observe. Here the authors, combining X-ray transient absorption spectroscopy and computations, provide insight into the photoinduced dynamics in pyrazine and the involvement of an optically dark 1Au(nπ*) state.Valeriu ScutelnicShota TsuruMátyás PápaiZheyue YangMichael EpshteinTian XueEric HaugenYuki KobayashiAnna I. KrylovKlaus B. MøllerSonia CorianiStephen R. LeoneNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Valeriu Scutelnic
Shota Tsuru
Mátyás Pápai
Zheyue Yang
Michael Epshtein
Tian Xue
Eric Haugen
Yuki Kobayashi
Anna I. Krylov
Klaus B. Møller
Sonia Coriani
Stephen R. Leone
X-ray transient absorption reveals the 1Au (nπ*) state of pyrazine in electronic relaxation
description Radiationless relaxation is ubiquitous in natural processes and often involves excited states that are difficult to observe. Here the authors, combining X-ray transient absorption spectroscopy and computations, provide insight into the photoinduced dynamics in pyrazine and the involvement of an optically dark 1Au(nπ*) state.
format article
author Valeriu Scutelnic
Shota Tsuru
Mátyás Pápai
Zheyue Yang
Michael Epshtein
Tian Xue
Eric Haugen
Yuki Kobayashi
Anna I. Krylov
Klaus B. Møller
Sonia Coriani
Stephen R. Leone
author_facet Valeriu Scutelnic
Shota Tsuru
Mátyás Pápai
Zheyue Yang
Michael Epshtein
Tian Xue
Eric Haugen
Yuki Kobayashi
Anna I. Krylov
Klaus B. Møller
Sonia Coriani
Stephen R. Leone
author_sort Valeriu Scutelnic
title X-ray transient absorption reveals the 1Au (nπ*) state of pyrazine in electronic relaxation
title_short X-ray transient absorption reveals the 1Au (nπ*) state of pyrazine in electronic relaxation
title_full X-ray transient absorption reveals the 1Au (nπ*) state of pyrazine in electronic relaxation
title_fullStr X-ray transient absorption reveals the 1Au (nπ*) state of pyrazine in electronic relaxation
title_full_unstemmed X-ray transient absorption reveals the 1Au (nπ*) state of pyrazine in electronic relaxation
title_sort x-ray transient absorption reveals the 1au (nπ*) state of pyrazine in electronic relaxation
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/e298089c6d1247a986e5ca1f47b760ae
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