| Literature DB >> 32087640 |
Kathryn Ledbetter1, Marco E Reinhard2, Kristjan Kunnus2, Alessandro Gallo3, Alexander Britz2, Elisa Biasin2, James M Glownia4, Silke Nelson4, Tim B Van Driel4, Clemens Weninger4, Diana B Zederkof5, Kristoffer Haldrup5, Amy A Cordones2, Kelly J Gaffney2, Dimosthenis Sokaras6, Roberto Alonso-Mori4.
Abstract
Valence-to-core x-ray emission spectroscopy (VtC XES) combines the sample flexibility and element specificity of hard x-rays with the chemical environment sensitivity of valence spectroscopy. We extend this technique to study geometric and electronic structural changes induced by photoexcitation in the femtosecond time domain via laser-pump, x-ray probe experiments using an x-ray free electron laser. The results of time-resolved VtC XES on a series of ferrous complexes [Fe(CN)2n(2, 2'-bipyridine)3-n]-2n+2, n = 1, 2, 3, are presented. Comparisons of spectra obtained from ground state density functional theory calculations reveal signatures of excited state bond length and oxidation state changes. An oxidation state change associated with a metal-to-ligand charge transfer state with a lifetime of less than 100 fs is observed, as well as bond length changes associated with metal-centered excited states with lifetimes of 13 ps and 250 ps.Entities:
Year: 2020 PMID: 32087640 DOI: 10.1063/1.5139441
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488