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Structural dynamics upon photoexcitation-induced charge transfer in a dicopper(I)-disulfide complex

Authors :
Jochen Ortmeyer
Dmitry Khakhulin
Michael Rübhausen
Shirly Espinoza
Mykola Biednov
Benjamin Dicke
Matthias Bauer
Martin Rohrmüller
Miroslav Kloz
Adam Neuba
Wolf Gero Schmidt
Alexander Britz
Roland Schoch
Benjamin Grimm-Lebsanft
Christian Bressler
Jakob Andreasson
Norman Kretzschmar
Mateusz Rebarz
Maria Naumova
Gerald Henkel
Department Chemie Paderborn University
Hamburg Ctr Ultrafast Imaging CUI, Luruper Chaussee 149, D-22761 Hamburg, Germany
Institute of Physics of the Czech Academy of Sciences (FZU / CAS)
Czech Academy of Sciences [Prague] (CAS)
University of Paderborn
Deutsches Elektronen-Synchrotron [Hamburg] (DESY)
European Synchrotron Radiation Facility (ESRF)
Source :
Physical Chemistry Chemical Physics, Physical Chemistry Chemical Physics, Royal Society of Chemistry, 2018, 20 (9), pp.6274-6286. ⟨10.1039/c7cp04880g⟩, 'Physical Chemistry Chemical Physics ', vol: 20, pages: 6274-6286 (2018)
Publication Year :
2018
Publisher :
HAL CCSD, 2018.

Abstract

International audience; The structural dynamics of charge-transfer states of nitrogen-ligated copper complexes has been extensively investigated in recent years following the development of pump-probe X-ray techniques. In this study we extend this approach towards copper complexes with sulfur coordination and investigate the influence of charge transfer states on the structure of a dicopper(I) complex with coordination by bridging disulfide ligands and additionally tetramethylguanidine units [CuI2(NSSN)(2)](2+). In order to directly observe and refine the photoinduced structural changes in the solvated complex we applied picosecond pump-probe X-ray absorption spectroscopy (XAS) and wide-angle X-ray scattering (WAXS). Additionally, the ultrafast evolution of the electronic excited states was monitored by femtosecond transient absorption spectroscopy in the UV-Vis probe range. DFT calculations were used to predict molecular geometries and electronic structures of the ground and metal-to-ligand charge transfer states with singlet and triplet spin multiplicities, i.e. S-0, (MLCT)-M-1 and (MLCT)-M-3, respectively. Combining these techniques we elucidate the electronic and structural dynamics of the solvated complex upon photoexcitation to the MLCT states. In particular, femtosecond optical transient spectroscopy reveals three distinct timescales of 650 fs, 10 ps and 4100 ps, which were assigned as internal conversion to the ground state (Sn -> S-0), intersystem crossing (MLCT)-M-1 -> (MLCT)-M-3, and subsequent relaxation of the triplet to the ground state, respectively. Experimental data collected using both X-ray techniques are in agreement with the DFT-predicted structure for the triplet state, where coordination bond lengths change and one of the S-S bridges is cleaved, causing the movement of two halves of the molecule relative to each other. Extended X-ray absorption fine structure spectroscopy resolves changes in Cu-ligand bond lengths with precision on the order of 0.01 angstrom, whereas WAXS is sensitive to changes in the global shape related to relative movement of parts of the molecule. The results presented herein widen the knowledge on the electronic and structural dynamics of photoexcited copper-sulfur complexes and demonstrate the potential of combining the pump-probe X-ray absorption and scattering for studies on photoinduced structural dynamics in copper-based coordination complexes.

Details

Language :
English
ISSN :
14639076 and 14639084
Database :
OpenAIRE
Journal :
Physical Chemistry Chemical Physics, Physical Chemistry Chemical Physics, Royal Society of Chemistry, 2018, 20 (9), pp.6274-6286. ⟨10.1039/c7cp04880g⟩, 'Physical Chemistry Chemical Physics ', vol: 20, pages: 6274-6286 (2018)
Accession number :
edsair.doi.dedup.....9c76339ffcfad29088f6f6a026c8adb0
Full Text :
https://doi.org/10.1039/c7cp04880g⟩