系统间交叉
化学
吩恶嗪
激发态
光化学
量子产额
光催化
催化作用
光催化
原子物理学
吩噻嗪
有机化学
荧光
量子力学
物理
药理学
医学
单重态
作者
Steven M. Sartor,Blaine G. McCarthy,Ryan M. Pearson,Garret M. Miyake,Niels H. Damrauer
摘要
A key feature of prominent transition-metal-containing photoredox catalysts (PCs) is high quantum yield access to long-lived excited states characterized by a change in spin multiplicity. For organic PCs, challenges emerge for promoting excited-state intersystem crossing (ISC), particularly when potent excited-state reductants are desired. Herein, we report a design exploiting orthogonal π-systems and an intermediate-energy charge-transfer excited state to maximize ISC yields (ΦISC) in a highly reducing (E0* = −1.7 V vs SCE), visible-light-absorbing phenoxazine-based PC. Simple substitution of N-phenyl for N-naphthyl is shown to dramatically increase ΦISC from 0.11 to 0.91 without altering catalytically important properties, such as E0*.
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