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

机译:AB初始化预测对oh自由基的2-丁酮在氢气抽取中的作用

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摘要

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:前和后的反应物的存在提出了影响夺氢反应动力学,但意义仍然存在争议。的理论研究,提出讨论关于夺氢配合物从2-丁酮通过基于在DLPNO-CCSD详细的PES(T)/ AUG-CC-pVTZ // M06-2x-D3 /可 - OH自由基的影响CC-pVTZ水平与在通道的入口5的预反应络合物和在出口4后反应复合物。的氢键相互作用,空间效应,并以键轨道在复杂的结构中的OH自由基种和2-丁酮物种的捐款可视化并通过波函数的分析调查。三种机制-一般双分子反应的,与复合物反应考虑,阱跳跃反应是基于高压极限速率常数相比,预测的分支比,和反应物的分数人群和产品在温度的250-2000复合物K的存在范围被证明是在动力学和从2-丁酮分子被OH自由基的夺氢的机制是至关重要的。

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  • 来源
    《RSC Advances 》 |2020年第55期| 共8页
  • 作者单位

    Tsinghua Univ Ctr Combust Energy Key Lab Thermal Sci &

    Power Engn MOE Beijing 100084 Peoples R China;

    ASTAR Inst Mat Res &

    Engn Soft Mat 2 Fusionopolis Way 08-03 Innovis Singapore 138634 Singapore;

    Donghua Univ State Key Lab Modicat Chem Fibers &

    Polymer Mat Int Joint Lab Adv Fiber &

    Low Dimens Mat Coll Mat Sci &

    Engn Shanghai 201620 Peoples R China;

    ASTAR Inst Mat Res &

    Engn Soft Mat 2 Fusionopolis Way 08-03 Innovis Singapore 138634 Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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