首页> 外文期刊>The Journal of Organic Chemistry >Mechanisms and Origins of Switchable Regioselectivity of Palladium- and Nickel-Catalyzed Allene Hydrosilylation with N-Heterocyclic Carbene Ligands: A Theoretical Study
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Mechanisms and Origins of Switchable Regioselectivity of Palladium- and Nickel-Catalyzed Allene Hydrosilylation with N-Heterocyclic Carbene Ligands: A Theoretical Study

机译:N-杂环碳原子配体对钯和镍催化的丙二烯氢化硅烷化反应的区域选择性机理和成因的理论研究

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摘要

The mechanisms and origins for the Pd- and Ni-catalyzed regioselective hydrosilylation of allene have been investigated by means of density functional theory (DFT) calculations. The free-energy profiles of Pd- and Ni-catalyzed reactions with small and bulky N-heterocyclic carbene (NHC) ligands are calculated to determine the mechanism for regioselectivities. The calculation results show that different metals (Ni vs Pd) lead to regiochemical reversals for the hydrosilylation of allene. The allylsilane is the major product via palladium catalysis with small NHC ligand, while the vinylsilane is the major product via nickel catalysis with bulky NHC ligand. Both electronic and steric factors play a key role in the regioselectivities for the hydrosilylation of allene via Pd and Ni catalysts. The calculation results are in good agreement with observed regioselectivities and could provide insights into the design of new catalysts for the regioselectivity of hydrosilylation reactions.
机译:利用密度泛函理论(DFT)计算研究了钯和镍催化的丙二烯区域选择性氢化硅烷化的机理和起源。计算了Pd和Ni催化的具有小而庞大的N-杂环卡宾(NHC)配体的自由能曲线,以确定区域选择性的机理。计算结果表明,不同的金属(Ni与Pd)会导致烯丙基的硅氢化反应发生区域化学逆转。烯丙基硅烷是通过NHC配体较小的钯催化的主要产物,而乙烯基硅烷是通过大块NHC配体进行镍催化的主要产物。电子和位阻因素在丙二烯通过Pd和Ni催化剂进行氢化硅烷化的区域选择性中都起着关键作用。计算结果与观察到的区域选择性很好地吻合,并且可以为氢化硅烷化反应的区域选择性的新催化剂的设计提供见解。

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