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◆ Inorganic Chemistry2026-05-23· Chemistry

Redox Chemistry and Photophysics of the <b>[V(dgpy)</b> <sub> <b>2</b> </sub> <b>]</b> <sup> <b>3+/2+</b> </sup> Redox Pair

Alexandra König, Marietta Goetz, Robert Naumann, Christoph Förster, J. Klett, Maximilian E. Huber, Philipp Weber, Christoph Riehn, Jennifer Meyer, Katja Heinze

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide Transition-metal complexes with earth-abundant metal centers hold significant potential for light-induced processes. Pseudo-octahedral vanadium(III) and vanadium(II) complexes with d 2 and d 3 electron configurations are promising candidates, yet their redox and excited-state properties are only insufficiently understood. Here, we combine quantum chemistry and experimental data (structure, cyclic voltammetry, spectroelectrochemistry, electron-transfer dissociation, collision-induced dissociation, ultraviolet photodissociation mass spectrometry, and ultrafast transient absorption spectroscopy) to elucidate redox and photostability as well as excited-state lifetimes of the vanadium(III/II) redox couple cisfac -[V(dgpy) 2 ] 3+/2+ (dgpy = 2,6-diguanidylpyridine). Ground-state splitting, mixing of spin-flip excited states with metal-to-ligand charge transfer states, and multiphonon relaxation are identified as the key challenges for excited-state lifetimes in these d 2 /d 3 systems.
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Redox Chemistry and Photophysics of the <b>[V(dgpy)</b> <sub> <b>2</b> </sub> <b>]</b> <sup> <b>3+/2+</b> </sup> Redox Pair — 科研速览 Science Skim