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◆ Journal of the American Chemical Society2026-06-04· Chemistry

Kinetics vs Thermodynamics:Engineering PhotoredoxReactivity from an Upper Excited State of FeII

Atanu Ghosh, Björn Pfund, Jonathan T. Yarranton, Yi-Jyun Lien, James K. McCusker

原始摘要(英文原文)· Original abstract
Abstract Ultrafast deactivation of metal-to-ligand charge-transfer (MLCT) states into low-lying metal-centered states has long limited the utility of first-row transition-metal complexes in a broad range of applications, including photoredox catalysis. Here we bypass such limitations using a FeII-pyridinium carbene complex to enable electron transfer reactivity directly from a higher-lying MLCT state. Time-resolved spectroscopic data revealed that the higher-energy MLCT manifold relaxes to lower-lying metal-centered states with a time constant of ca. 3 ps. The nature of the metal-centered (MC) excited state as a 3MC (i.e., S = 1) was inferred from variable-temperature transient absorption studies. These experiments also revealed that the ground-state recovery process occurs at or very near the “Marcus barrierless regime”, thereby allowing for an estimate of its excited-state redox potential. The detailed picture of the energetics of this compound that emerged enabled fine-tuning of competing thermodynamic and kinetic pathways to effect electron transfer from the higher-energy MLCT excited state prior to relaxation to the ligand-field manifold. We believe these results open an unexplored landscape for the use of earth-abundant first-row transition-metal-based chromophores for applications in light-to-chemical energy conversion.
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Kinetics vs Thermodynamics:Engineering PhotoredoxReactivity from an Upper Excited State of FeII — 科研速览 Science Skim