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Mechanism of Side Reactions in Alkane C-H Bond Functionalization by Diazo Compounds Catalyzed by Ag and Cu Homoscorpionate Complexes—A DFT Study

机译:ag和Cu同位素配合物催化重氮化合物烷烃C-H键官能化反应的机理 - DFT研究

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摘要

DFT computational methods were applied to the mechanistic study of the formation of fumarate and maleate derivatives in a solution containing alkane, TpBr3M [M=Cu, Ag; TpBr3=hydrotris(3,4,5-tribromopyrazolyl)borate] and methyl diazoacetate. These solutions are the experimentally reported conditions for carbene insertion into alkane C-H bonds, a procedure that usually competes with a nondesired reaction, producing fumarate and/or maleate derivatives. Several mechanisms are analyzed. The preferred mechanism proceeds through a direct reaction between a metallocarbene complex intermediate and a diazo molecule. The computational results explain all of the available experimental evidence and provide important information on the behavior of these systems.
机译:DFT计算方法被用于在含烷烃TpBr3M [M = Cu,Ag;的溶液中形成富马酸酯和马来酸酯衍生物的机理研究。 TpBr 3 =氢三(3,4,5-三溴吡唑基)硼酸酯]和重氮乙酸甲酯。这些溶液是卡宾插入烷烃C-H键的实验报道条件,该方法通常与不希望的反应竞争,生成富马酸酯和/或马来酸酯衍生物。分析了几种机制。优选的机理是通过金属碳烯配合物中间体和重氮分子之间的直接反应进行的。计算结果解释了所有可用的实验证据,并提供了有关这些系统行为的重要信息。

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