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首页> 外文期刊>Catalysis science & technology >Mechanism, selectivity, and reactivity of iridium- and rhodium-catalyzed intermolecular ketone alpha-alkylation with unactivated olefins via an enamide directing strategy
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Mechanism, selectivity, and reactivity of iridium- and rhodium-catalyzed intermolecular ketone alpha-alkylation with unactivated olefins via an enamide directing strategy

机译:机制、选择性和反应性铱-和rhodium-catalyzed酮分子间通过一个alpha-alkylation与未激活的烯烃enamide指导策略

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Density functional theory calculations were performed to investigate the iridium- and rhodium-catalyzed intermolecular ketone -alkylation with unactivated olefins via an enamide directing strategy. The computations show that after the initial C-H oxidative addition, the Ir system proceeds through the pathway of the migratory insertion into the Ir-C bond/C-H reductive elimination. The calculations reproduced quite well the experimentally observed regio- and chemoselectivities. The regioselectivity of the reaction was found to be caused by a combination of both steric and electronic effects, which makes the 2,1-insertion into the Ir-C bond much more favored than the 1,2-insertion into the Ir-C bond, resulting in the observed excellent branched selectivity. The chemoselectivity of the reaction taking place exclusively with the alkene C(sp(2))-H bond can be explained by the fact that the aromatic C(sp(2))-H oxidative addition to form five- and seven-membered metallacycles suffers from higher strain energy than the alkene C(sp(2))-H oxidative addition to form a six-membered metallacycle. The replacement of Ir by Rh turns out to have a profound impact on the energies of the elementary steps, which not only makes the catalytic activity of the Rh catalyst much less efficient compared to the Ir catalyst, but also results in the mechanistic change to an alternative pathway via the migratory insertion into the Rh-H bond/C-C reductive elimination to produce the linear product.
机译:密度泛函理论计算调查铱和执行的rhodium-catalyzed酮分子间通过一个与未激活的烯烃烷基化enamide指导策略。在最初的碳氢键氧化加成,红外系统收益的途径迁移插入Ir-C债券/碳氢键还原消除。实验观察到复制相当不错区,chemoselectivities。区域选择性的反应被发现由于空间和组合电子效应,使2 1插入Ir-C债券更青睐1、2插入到Ir-C债券,导致观察到的优秀的分支选择性。chemoselectivity反应的发生只与烯烃的C - h键(sp (2))被解释的芳香C (sp (2)) - h氧化除了五年和形式七人metallacycles遭受更高应变能比烯烃C - h (sp (2))氧化形成六元metallacycle。有能量的产生深远影响基本的步骤,这不仅使Rh催化剂的催化活性更少高效红外催化剂相比,但也结果在机械的改变通过迁移插入替代途径到Rh-H债券/碳碳还原消除产生线性的产品。

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