Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8943052 | Chemical Physics | 2018 | 29 Pages |
Abstract
Though there have been many studies on photosensitizers coupled to model complexes of the [FeFe]-hydrogenases, few have looked at how the models react upon exposure to light. To extract photoreaction information, ultrafast time-resolved UV/visible pump, IR probe spectroscopy was performed on Fe2(μ-S2C2H4)(CO)4(PMe3)2 (2b) dissolved in heptane and acetonitrile and the photochemical dynamics were determined. Excitation with 532 and 355â¯nm light produces bleaches and new absorptions that decay to half their original intensity with time constants of 300â¯Â±â¯120â¯ps and 380â¯Â±â¯210â¯ps in heptane and acetonitrile, respectively. These features persist to the microsecond timescale. The dynamics of 2b are assigned to formation of an initial set of photoproducts, which were a mixture of excited-state tricarbonyl isomers. These isomers decay into another set of long-lived photoproducts in which approximately half the excited-state tricarbonyl isomers recombine with CO to form another complex mixture of tricarbonyl and tetracarbonyl isomers.
Related Topics
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Authors
Rachel L. Meyer, Annette D. Zhandosova, Tara M. Biser, Edwin J. Heilweil, Christopher J. Stromberg,