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Monitoring vibronic coherences and molecular aromaticity in photoexcited cyclooctatetraene with an X-ray probe: a simulation study

Understanding conical intersection (CI) dynamics and subsequent conformational changes is key for exploring and controlling photo-reactions in aromatic molecules. Monitoring of their time-resolved dynamics remains a formidable experimental challenge. In this study, we simulate the photoinduced S(3)...

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Autores principales: Nam, Yeonsig, Song, Huajing, Freixas, Victor M., Keefer, Daniel, Fernandez-Alberti, Sebastian, Lee, Jin Yong, Garavelli, Marco, Tretiak, Sergei, Mukamel, Shaul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10016608/
https://www.ncbi.nlm.nih.gov/pubmed/36937575
http://dx.doi.org/10.1039/d2sc04335a
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author Nam, Yeonsig
Song, Huajing
Freixas, Victor M.
Keefer, Daniel
Fernandez-Alberti, Sebastian
Lee, Jin Yong
Garavelli, Marco
Tretiak, Sergei
Mukamel, Shaul
author_facet Nam, Yeonsig
Song, Huajing
Freixas, Victor M.
Keefer, Daniel
Fernandez-Alberti, Sebastian
Lee, Jin Yong
Garavelli, Marco
Tretiak, Sergei
Mukamel, Shaul
author_sort Nam, Yeonsig
collection PubMed
description Understanding conical intersection (CI) dynamics and subsequent conformational changes is key for exploring and controlling photo-reactions in aromatic molecules. Monitoring of their time-resolved dynamics remains a formidable experimental challenge. In this study, we simulate the photoinduced S(3) to S(1) non-adiabatic dynamics of cyclooctatetraene (COT), involving multiple CIs with relaxation times in good agreement with experiment. We further investigate the possibility to directly probe the CI passages in COT by off-resonant X-ray Raman spectroscopy (TRUECARS) and time-resolved X-ray diffraction (TRXD). We find that these signals sensitively monitor key chemical features during the ultrafast dynamics. First, we distinguish two CIs by using TRUECARS signals with their appearances at different Raman shifts. Second, we demonstrate that TRXD, where X-ray photons scatter off electron densities, can resolve ultrafast changes in the aromaticity of COT. It can further distinguish between planar and non-planar geometries explored during the dynamics, as e.g. two different tetraradical-type CIs. The knowledge gained from these measurements can give unique insight into fundamental chemical properties that dynamically change during non-adiabatic passages.
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spelling pubmed-100166082023-03-16 Monitoring vibronic coherences and molecular aromaticity in photoexcited cyclooctatetraene with an X-ray probe: a simulation study Nam, Yeonsig Song, Huajing Freixas, Victor M. Keefer, Daniel Fernandez-Alberti, Sebastian Lee, Jin Yong Garavelli, Marco Tretiak, Sergei Mukamel, Shaul Chem Sci Chemistry Understanding conical intersection (CI) dynamics and subsequent conformational changes is key for exploring and controlling photo-reactions in aromatic molecules. Monitoring of their time-resolved dynamics remains a formidable experimental challenge. In this study, we simulate the photoinduced S(3) to S(1) non-adiabatic dynamics of cyclooctatetraene (COT), involving multiple CIs with relaxation times in good agreement with experiment. We further investigate the possibility to directly probe the CI passages in COT by off-resonant X-ray Raman spectroscopy (TRUECARS) and time-resolved X-ray diffraction (TRXD). We find that these signals sensitively monitor key chemical features during the ultrafast dynamics. First, we distinguish two CIs by using TRUECARS signals with their appearances at different Raman shifts. Second, we demonstrate that TRXD, where X-ray photons scatter off electron densities, can resolve ultrafast changes in the aromaticity of COT. It can further distinguish between planar and non-planar geometries explored during the dynamics, as e.g. two different tetraradical-type CIs. The knowledge gained from these measurements can give unique insight into fundamental chemical properties that dynamically change during non-adiabatic passages. The Royal Society of Chemistry 2023-02-14 /pmc/articles/PMC10016608/ /pubmed/36937575 http://dx.doi.org/10.1039/d2sc04335a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Nam, Yeonsig
Song, Huajing
Freixas, Victor M.
Keefer, Daniel
Fernandez-Alberti, Sebastian
Lee, Jin Yong
Garavelli, Marco
Tretiak, Sergei
Mukamel, Shaul
Monitoring vibronic coherences and molecular aromaticity in photoexcited cyclooctatetraene with an X-ray probe: a simulation study
title Monitoring vibronic coherences and molecular aromaticity in photoexcited cyclooctatetraene with an X-ray probe: a simulation study
title_full Monitoring vibronic coherences and molecular aromaticity in photoexcited cyclooctatetraene with an X-ray probe: a simulation study
title_fullStr Monitoring vibronic coherences and molecular aromaticity in photoexcited cyclooctatetraene with an X-ray probe: a simulation study
title_full_unstemmed Monitoring vibronic coherences and molecular aromaticity in photoexcited cyclooctatetraene with an X-ray probe: a simulation study
title_short Monitoring vibronic coherences and molecular aromaticity in photoexcited cyclooctatetraene with an X-ray probe: a simulation study
title_sort monitoring vibronic coherences and molecular aromaticity in photoexcited cyclooctatetraene with an x-ray probe: a simulation study
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10016608/
https://www.ncbi.nlm.nih.gov/pubmed/36937575
http://dx.doi.org/10.1039/d2sc04335a
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