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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Complete Basis Set ab Initio Computational Exploration of the Lowest Energy, Unimolecular, Triplet Potential Energy Surface for Triplet Oxygen Atom Assisted Acetylene Rearrangement into Vinylidene
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Complete Basis Set ab Initio Computational Exploration of the Lowest Energy, Unimolecular, Triplet Potential Energy Surface for Triplet Oxygen Atom Assisted Acetylene Rearrangement into Vinylidene

机译:三重态氧原子辅助乙炔重排成亚乙烯基的最低能量,单分子,三重态势能面的完整基础集从头算计算探索

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摘要

The unimolecular triplet potential energy surface was explored with the complete basis set method with the aim being to evaluate the possibility of the triplet oxygen atom assisted acetylene rearrangement into vinylidine. Various linear and cyclic oxygen-acetylene adducts and isomers are located, and their structures are optimized at the MP2/6-31G(d')level of theory, with the energy evaluation at the CBSQ ab initio level of theory. These stationary points are connected with 17 transition state structures. Their interconversion activation barriers were evaluated together with the enthalpies of the reactions, and for some C_2H_2O isomers, the selective bond dissociation energies were also estimated. The experimental feasibility of some of the reaction channels was discussed, and from all calculations presented in this paper it is a general conclusion that the oxygen assisted acetylene-vinylidene rearrangement is not possible through the unimolecular reactions of the C_2H_2O isomers in their triplet states. The possibility of the existence of the two-molecule hydrogen reactions was indicated, for which additional potential energy surface exploration is required.
机译:用完全基集方法研究了单分子三重态势能面,目的是评估三重态氧原子辅助的乙炔重排成亚乙烯基的可能性。找到了各种线性和环状的氧-乙炔加合物和异构体,并在理论上从MP2 / 6-31G(d')的水平对其结构进行了优化,并从理论上从头开始进行了能量评估。这些固定点与17个过渡状态结构相连。与反应的焓一起评估了它们的相互转化活化势垒,并且对于一些C_2H_2O异构体,还估计了选择性键解离能。讨论了某些反应通道的实验可行性,从本文给出的所有计算中得出一个普遍的结论,即通过三元态的C_2H_2O异构体的单分子反应不可能进行氧辅助的乙炔-亚乙烯基重排。指出了存在两分子氢反应的可能性,为此需要额外的势能面探索。

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