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Breaking the regioselectivity rule for acrylate insertion in the Mizoroki–Heck reaction

机译:打破了Mizoroki-Heck反应中丙烯酸酯插入的区域选择性规则

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摘要

In modern methods for the preparation of small molecules and polymers, the insertion of substrate carbon–carbon double bonds into metal–carbon bonds is a fundamental step of paramount importance. This issue is illustrated by Mizoroki–Heck coupling as the most prominent example in organic synthesis and also by catalytic insertion polymerization. For unsymmetric substrates H2C = CHX the regioselectivity of insertion is decisive for the nature of the product formed. Electron-deficient olefins insert selectively in a 2,1-fashion for electronic reasons. A means for controlling this regioselectivity is lacking to date. In a combined experimental and theoretical study, we now report that, by destabilizing the transition state of 2,1-insertion via steric interactions, the regioselectivity of methyl acrylate insertion into palladium–methyl and phenyl bonds can be inverted entirely to yield the opposite “regioirregular” products in stoichiometric reactions. Insights from these experiments will aid the rational design of complexes which enable a catalytic and regioirregular Mizoroki–Heck reaction of electron-deficient olefins.
机译:在现代制备小分子和聚合物的方法中,将底物碳-碳双键插入金属-碳键是最重要的基本步骤。 Mizoroki-Heck偶联是有机合成中最突出的例子,也可以通过催化插入聚合来说明。对于非对称底物H2C = CHX,插入的区域选择性对于所形成产物的性质至关重要。出于电子原因,电子不足的烯烃选择性地以2,1-方式插入。迄今为止,尚缺乏用于控制该区域选择性的手段。在一项结合实验和理论研究的研究中,我们现在报告,通过空间相互作用破坏2,1-插入的过渡态,丙烯酸甲酯插入钯-甲基和苯基键的区域选择性可以完全反转,从而产生相反的“化学计量反应中的区域不规则”产物。这些实验的见解将有助于合理设计配合物,从而使缺电子的烯烃能够催化并进行不规则的Mizoroki-Heck反应。

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