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HBr + CO → HOCO + Br反应动力学的理论研究

Theoretical Study of the Dynamics of the HBr + CO → HOCO + Br Reaction.

作者信息

Luo Yuheng, Fujioka Kazuumi, Shoji Alyson, Hase William L, Weitzel Karl-Michael, Sun Rui

机构信息

Department of Chemistry, The University of Hawai'i at Manoa, Honolulu, Hawaii 96822, United States.

Department of Chemistry and Biochemistry, Texas Tech University, Lubbock, Texas 79409, United States.

出版信息

J Phys Chem A. 2020 Nov 5;124(44):9119-9127. doi: 10.1021/acs.jpca.0c05323. Epub 2020 Oct 26.

Abstract

The dynamics of the HBr + CO → HOCO + Br reaction was recently investigated with guided ion beam experiments under various excitations (collision energy of the reactants, rotational and spin-orbital states of HBr, etc.), and their impacts were probed through the change of the cross section of the reaction. The potential energy profile of this reaction has also been accurately characterized by high-level methods such as CCSD(T)/CBS, and the UMP2/cc-pVDZ/lanl08d has been identified as an ideal method to study its dynamics. This manuscript reports the first molecular dynamics simulations of this reaction at two different collision energies, 8.1 kcal/mol and 19.6 kcal/mol. The cross sections measured from the simulations agree very well with the experiments measured with HBr in the ∏ state. The simulations reveal three distinct mechanisms at both collision energies: direct rebound (DR), direct stripping (DS), and indirect (Ind) mechanisms. DS and Ind make up 97% of the total reaction. The dynamics of this reaction is also compared with nucleophilic substitution (S2) reactions of + CH → CH + type. In summary, this research has revealed interesting dynamics of the HBr + CO → HOCO + Br reaction at different collision energies and has laid a solid foundation for using this reaction to probe the impact of rotational excitation of ion-molecule reactions in general.

摘要

最近通过引导离子束实验在各种激发条件下(反应物的碰撞能量、HBr的转动和自旋轨道状态等)研究了HBr + CO → HOCO + Br反应的动力学,并通过反应截面的变化来探究其影响。该反应的势能面也已通过诸如CCSD(T)/CBS等高阶方法精确表征,并且UMP2/cc-pVDZ/lanl08d已被确定为研究其动力学的理想方法。本论文报道了该反应在8.1 kcal/mol和19.6 kcal/mol两种不同碰撞能量下的首次分子动力学模拟。模拟得到的截面与在∏态下用HBr测得的实验结果非常吻合。模拟揭示了在两种碰撞能量下都存在三种不同的机制:直接反弹(DR)、直接剥离(DS)和间接(Ind)机制。DS和Ind占总反应的97%。该反应的动力学还与 + CH → CH + 类型的亲核取代(S2)反应进行了比较。总之,本研究揭示了HBr + CO → HOCO + Br反应在不同碰撞能量下有趣的动力学,为利用该反应探究一般离子 - 分子反应中转动激发的影响奠定了坚实基础。

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