光催化
光化学
化学
催化作用
催化循环
自由基离子
超快激光光谱学
激进的
均相催化
芳基
硼酸化
离子
光谱学
芳基
有机化学
光催化
量子力学
物理
烷基
作者
Dong Yeun Jeong,Da Seul Lee,Ha Lim Lee,Sanghee Nah,Jun Yeob Lee,Eun Jin Cho,Youngmin You
标识
DOI:10.1021/acscatal.2c00763
摘要
Photoinduced electron transfer of a radical species provides a promising strategy for expanding the scope of photoredox catalysis. However, the mechanism underlying the radical-ion photoredox catalysis has yet been fully established. In the present research, we investigated the generation and annihilation of the key catalytic intermediate in the borylation reaction of aryl halides. To disentangle the intricate catalysis cycle, we conducted experiments using electrochemical, transient absorption and photoluminescence spectroscopy and quantum chemical calculation techniques. Our mechanistic studies provided convincing evidence that the active catalyst species is the excited-state radical anion. We also found that the catalyst activation is retarded by multiple annihilative processes, among which the intrinsic relaxation of the excited-state radical anion of the catalyst is the most destructive. We expect these mechanistic findings will guide the future development of photoredox catalysis of radical species.
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