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Naked d-orbital in a centrochiral Ni(II) complex as a catalyst for asymmetric 3+2 cycloaddition

机译:中心手性Ni(II)配合物中的裸d-轨道作为不对称3 + 2环加成的催化剂

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摘要

Chiral metal catalysts have been widely applied to asymmetric transformations. However, the electronic structure of the catalyst and how it contributes to the activation of the substrate is seldom investigated. Here, we report an empirical approach for providing insights into the catalytic activation process in the distorted Ni(II)-catalysed asymmetric [3+2] cycloaddition of α-ketoesters. We quantitatively characterize the bonding nature of the catalyst by means of electron density distribution analysis, showing that the distortion around the Ni(II) centre makes the dz2 orbital partially ‘naked', wherein the labile acetate ligand is coordinated with electrostatic interaction. The electron-deficient dz2 orbital and the acetate act together to deprotonate the α-ketoester, generating the (Λ)-Ni(II)–enolate. The solid and solution state analyses, together with theoretical calculations, strongly link the electronic structure of the centrochiral octahedral Ni(II) complex and its catalytic activity, depicting a cooperative mechanism of enolate binding and outer sphere hydrogen-bonding activation.
机译:手性金属催化剂已被广泛应用于不对称转化。然而,很少研究催化剂的电子结构及其对底物活化的贡献。在这里,我们报告一种经验的方法,为扭曲的Ni(II)催化α-酮酸酯的不对称[3 + 2]环加成反应中的催化活化过程提供了见识。我们通过电子密度分布分析定量表征了催化剂的键合性质,结果表明,Ni(II)中心周围的变形使dz 2 轨道部分“裸露”,其中不稳定的乙酸酯配体与静电相互作用协调。缺电子的dz 2 轨道和乙酸盐共同作用,使α-酮酸酯去质子化,生成(Λ)-Ni(II)-烯醇酸酯。固态和固溶体状态分析以及理论计算将中心手性八面体Ni(II)配合物的电子结构与其催化活性紧密联系在一起,描绘了烯醇盐键合和外球氢键活化的协同机制。

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