Vibrational wavepacket dynamics in Fe carbene photosensitizer determined with femtosecond X-ray emission and scattering
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Published:2020-01-31
Issue:1
Volume:11
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Kunnus KristjanORCID, Vacher MorganeORCID, Harlang Tobias C. B., Kjær Kasper S., Haldrup KristofferORCID, Biasin Elisa, van Driel Tim B., Pápai MátyásORCID, Chabera PavelORCID, Liu Yizhu, Tatsuno Hideyuki, Timm Cornelia, Källman Erik, Delcey Mickaël, Hartsock Robert W., Reinhard Marco E.ORCID, Koroidov Sergey, Laursen Mads G., Hansen Frederik B., Vester PeterORCID, Christensen Morten, Sandberg Lise, Németh Zoltán, Szemes Dorottya Sárosiné, Bajnóczi ÉvaORCID, Alonso-Mori RobertoORCID, Glownia James M., Nelson Silke, Sikorski Marcin, Sokaras Dimosthenis, Lemke Henrik T.ORCID, Canton Sophie E.ORCID, Møller Klaus B.ORCID, Nielsen Martin M.ORCID, Vankó GyörgyORCID, Wärnmark Kenneth, Sundström VillyORCID, Persson PetterORCID, Lundberg MarcusORCID, Uhlig JensORCID, Gaffney Kelly J.ORCID
Abstract
AbstractThe non-equilibrium dynamics of electrons and nuclei govern the function of photoactive materials. Disentangling these dynamics remains a critical goal for understanding photoactive materials. Here we investigate the photoinduced dynamics of the [Fe(bmip)2]2+ photosensitizer, where bmip = 2,6-bis(3-methyl-imidazole-1-ylidine)-pyridine, with simultaneous femtosecond-resolution Fe Kα and Kβ X-ray emission spectroscopy (XES) and X-ray solution scattering (XSS). This measurement shows temporal oscillations in the XES and XSS difference signals with the same 278 fs period oscillation. These oscillations originate from an Fe-ligand stretching vibrational wavepacket on a triplet metal-centered (3MC) excited state surface. This 3MC state is populated with a 110 fs time constant by 40% of the excited molecules while the rest relax to a 3MLCT excited state. The sensitivity of the Kα XES to molecular structure results from a 0.7% average Fe-ligand bond length shift between the 1 s and 2p core-ionized states surfaces.
Funder
DOE | Office of Science
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
Reference77 articles.
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