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Theoretical model for the reaction mechanisms of singlet carbene analogs into unsaturated hydrocarbon and the origin of the activation barrier

机译:单线态卡宾类似物与不饱和烃反应机理的理论模型及活化障碍的起源

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摘要

The addition of singlet carbene analogs XR2 (X = C, Si, Ge, and Sn; R = H and F) into ethylene have been investigated by ab initio molecular orbital methods. The reaction mechanisms are two-step processes. The first step is the complex formation, the C-X bond formation of one site, with the interaction between the empty p(pi) orbital of carbene analogs and the pi orbital of ethylene, and the second is the other C-X bond formation with biradical coupling (addition). The transition states correspond to the intermediate process between the first and the second steps. The localized molecular orbital (LMO) configuration analysis along the intrinsic reaction coordinate (IRC) path showed important singlet excitation character for the transition state. An increase in the energy barrier heights for the above systems is associated with a general increase in the singlet excitation energies of carbene analogs XR2. On the basis of the proposed reaction mechanism, the heats of formation for the treated reaction systems were estimated. (C) 1998 John Wiley & Sons, Inc. [References: 34]
机译:已经通过从头开始的分子轨道方法研究了将单线态卡宾类似物XR2(X = C,Si,Ge和Sn; R = H和F)添加到乙烯中的方法。反应机理为两步过程。第一步是复合物的形成,一个位点的CX键形成,带有卡宾类似物的空p(pi)轨道与乙烯的pi轨道之间的相互作用,第二步是另一个具有双自由基偶联的CX键形成(加成)。过渡状态对应于第一步和第二步之间的中间过程。沿本征反应坐标(IRC)路径的局部分子轨道(LMO)构型分析显示出过渡态的重要单重态激发特性。上述系统的能垒高度的增加与卡宾类似物XR2的单线态激发能的普遍增加有关。基于提出的反应机理,估计了处理过的反应体系的形成热。 (C)1998 John Wiley&Sons,Inc. [参考:34]

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