作者:Caleb D. Fast、Nathan D. Schley
DOI:10.1021/acs.organomet.1c00391
日期:2021.10.11
A catalytic, light-promoted hydrosilylative cleavage reaction of alkyl ethers is reported. Initial studies are consistent with a mechanism involving heterolytic silane activation followed by delivery of a photohydride equivalent to a silyloxonium ion generated in situ. The catalyst resting state is a mixture of Cp*Ir(ppy)H (ppy = 2-phenylpyridine-κC,N) and a related hydride-bridged dimer. Trends in
报道了烷基醚的催化、光促进的氢化硅烷化裂解反应。最初的研究与涉及异解硅烷活化的机制一致,然后传递相当于原位生成的甲硅烷基氧鎓离子的光氢化物。催化剂静止状态是 Cp*Ir(ppy)H (ppy = 2-苯基吡啶-κ C , N) 和相关的氢化物桥接二聚体。底物还原选择性的趋势与 C-O 键断裂的非自由基机制一致。在化学计量测试中发现用蓝光照射 Cp*Ir(ppy)H 会增加氢化物向氧鎓离子的传递速率。在羰基氢化硅烷化催化中发现了类似的速率增强,其通过相关机制起作用,也涉及 Cp*Ir(ppy)H 作为静止状态。