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Ab initio kinetics predictions for the role of pre-reaction complexes in hydrogen abstraction from 2-butanone by OH radicals

机译:AB Initio动力学预测对由OH基团的2-丁酮在氢气抽取中的反应复合物的作用

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The existence of pre- and post-reaction complexes has been proposed to influence hydrogen abstraction reaction kinetics, but the significance still remains controversial. A theoretical study is presented to discuss the effects of complexes on hydrogen abstraction from 2-butanone by OH radicals based on the detailed PESs at the DLPNO-CCSD(T)/aug-cc-pVTZ//M06-2x-D3/may-cc-pVTZ level with five pre-reaction complexes at the entrance of the channels and four post-reaction complexes at the exit. The hydrogen bond interactions, steric effects, and contributions to the bonding orbital of the OH radical species and 2-butanone species in the complex structures were visualized and investigated by wavefunction analyses. Three kinds of mechanisms—the general bimolecular reaction, the reaction with the complexes considered, and the well-skipping reaction—were compared based on high-pressure-limit rate constants, predicted branching ratios, and fractional populations of reactants and products in the temperature range of 250–2000 K. The existence of complexes was proved to be crucial in the kinetics and mechanisms of the hydrogen abstraction from 2-butanone molecules by OH radicals.
机译:已经提出了反应前和后反应后复合物的存在以影响氢气抽取反应动力学,但重要性仍然存在争议。提出了一种理论研究,讨论了综合对2-丁酮的氢气抽取的影响,基于DLPNO-CCSD(T)/ Aug-CC-PVTZ // M06-2X-D3 / May-的详细PES - CC-PVTZ水平在通道入口处的五个预反应复合物和出口处的四个反应后复合物。通过波力分析,可视化并研究了复合结构中OH基团物种和2-丁酮物种的粘合轨道的氢键相互作用,空间效应和贡献。三种机制 - 一般的双分子反应,与所考虑的络合物反应,并基于高压极限速率常数,预测的分支比率和反应物的分数和产品分数群体250-2000 K的范围。证明复合物的存在对于来自oh基团的2-丁酮分子的氢抽取的动力学和机制至关重要。

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