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Gold(II) Porphyrins in Photoinduced Electron Transfer Reactions
Authors:Sebastian Preiß  Ayla Päpcke  Lukas Burkhardt  Luca Großmann  Prof. Dr. Stefan Lochbrunner  Prof. Dr. Matthias Bauer  Prof. Dr. Till Opatz  Prof. Dr. Katja Heinze
Affiliation:1. Institute of Inorganic Chemistry and Analytical Chemistry, Johannes Gutenberg University Mainz, Duesbergweg 10–14, 55128 Mainz, Germany;2. Institute of Physics and Department of Life, Light, and Matter, University of Rostock, Albert-Einstein-Straße 23-24, 18059 Rostock, Germany;3. Department Chemie and Center for Sustainable Systems Design (CSSD), Paderborn University, Warburger Strasse 100, 33098 Paderborn, Germany;4. Institute of Organic Chemistry, Johannes Gutenberg University Mainz, Duesbergweg 10–14, 55128 Mainz, Germany
Abstract:In the context of solar-to-chemical energy conversion, inspired by natural photosynthesis, the synthesis, electrochemical properties and photoinduced electron-transfer processes of three novel zinc(II)-gold(III) bis(porphyrin) dyads [ZnII(P)–AuIII(P)]+ are presented (P: tetraaryl porphyrin). Time-resolved spectroscopic studies indicated ultrafast dynamics (kurn:x-wiley:09476539:media:chem201900050:chem201900050-math-0001 >1010 s−1) after visible-light excitation, which finally yielded a charge-shifted state [ZnII(P ⋅ +)–AuII(P)]+ featuring a gold(II) center. The lifetime of this excited state is quite long due to a comparably slow charge recombination (kurn:x-wiley:09476539:media:chem201900050:chem201900050-math-0002 ≈3×108 s−1). The [ZnII(P ⋅ +)–AuII(P)]+ charge-shifted state is reductively quenched by amines in bimolecular reactions, yielding the neutral zinc(II)–gold(II) bis(porphyrin) ZnII(P)–AuII(P). The electronic nature of this key gold(II) intermediate, prepared by chemical or photochemical reduction, is elucidated by UV/Vis, X-band EPR, gold L3-edge X-ray absorption near edge structure (XANES) and paramagnetic 1H NMR spectroscopy as well as by quantum chemical calculations. Finally, the gold(II) site in ZnII(P)–AuII(P) is thermodynamically and kinetically competent to reduce an aryl azide to the corresponding aryl amine, paving the way to catalytic applications of gold(III) porphyrins in photoredox catalysis involving the gold(III/II) redox couple.
Keywords:electron transfer  gold  paramagnetic NMR spectroscopy  photoinduced electron transfer  porphyrins
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