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Theoretical investigation on copper hydrides catalyzed hydrosilylation reaction of 3-methylcyclohex-2-enone: mechanism and ligands' effect

机译:3-甲基环甲基-2-烯烃催化铜氢化铜催化的氢硅烷化反应的理论研究:机理和配体的作用

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摘要

The mechanism of the hydrosilylation reactions of 3-methylcyclohex-2-enone with tetramethyldisiloxane (TMDS) catalyzed by (Ph3P)CuH and (IPr)CuH has been investigated by DFT. The catalytic cycle is composed of two steps: the addition of the copper hydrides to the C=C bond in the substrate, and the regeneration of the copper hydrides assisted by TMDS. The calculations indicate that the catalyst recovery step is the rate-determining step. The assistances of IPr and Ph3P ligands to the CuH catalysts make the transition state structures compact and stable. The steric bulk of the ligands could help to stabilize the central Cu atom and promote the coordination of the central Cu atom with the substrate. The higher nucleophilicity of the catalysts and the stronger interaction of the ligands with the central Cu atom make the catalysts interact more easily with the substrate. The hydrosilylation reaction proceeds more favorably when catalyzed by (IPr)CuH as compared to (Ph3P)CuH.
机译:DFT研究了3-甲基循环-2-耐连接与四甲基二硅氧烷(TMDS)催化(PH3P)CUH和(IPR)CUH的机理。 催化循环由两个步骤组成:将铜氢化物添加到底物中的C = C键中,以及由TMDS辅助的铜氢化物的再生。 计算表明催化剂恢复步骤是速率确定的步骤。 IPR和PH3P配体对CuH催化剂的辅助使过渡状态结构紧凑且稳定。 配体的空间大部分可以帮助稳定中央铜原子,并促进中央铜原子与底物的协调。 催化剂的较高亲核性以及配体与中央铜原子的更强相互作用使催化剂与底物更容易相互作用。 与(ph3p)CuH相比,当(IPR)CuH催化时,氢硅烷化反应更加有利。

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