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C⁺(²P₁/₂, ³/₂) + H₂反应的非绝热动力学研究:基于CH₂的全局 diabatic 势能面

Non-adiabatic dynamics studies of the C+(2P1/2, 3/2) + H2 reaction: Based on global diabatic potential energy surfaces of CH2.

作者信息

Li Wentao, Dong Bin, Niu Xianghong, Wang Meishan, Zhang Yong

机构信息

Weifang University of Science and Technology, Shouguang 262700, China.

School of Science, Nanjing University of Posts and Telecommunications, Nanjing 210003, China.

出版信息

J Chem Phys. 2024 Aug 21;161(7). doi: 10.1063/5.0223199.

Abstract

Global diabatic potential energy surfaces (PESs) of CH2+ are constructed using the neural network method with a specific function based on 18 213 ab initio points. The multi-reference configuration interaction method with the aug-cc-pVQZ basis set is adopted to perform the ab initio calculations. The topographical properties of the diabatic PESs are examined in detail. In general, the diabatic PESs provide an accurate quasi-diabatic representation. To validate the diabatic PESs, the dynamics studies of the C+(2P1/2, 3/2) + H2 (v0 = 0, j0 = 0) → H + CH+(X1Σ+) reaction are performed using the time-dependent wave packet method. The reaction probabilities, integral cross sections, differential cross sections, and rate constants are calculated and compared with the experimental and theoretical results. Non-adiabatic dynamics results are in good agreement with experimental data. In addition, the non-adiabatic effect in the C+(2P1/2, 3/2) + H2 reaction is significant due to the non-adiabatic results being obviously larger than adiabatic values. The reasonable non-adiabatic dynamics results indicate that present diabatic PESs can be recommended for any type of dynamics study.

摘要

利用神经网络方法,基于18213个从头算点,构建了具有特定函数的CH2+的全局非绝热势能面(PESs)。采用多参考组态相互作用方法和aug-cc-pVQZ基组进行从头算计算。详细研究了非绝热PESs的地形特性。一般来说,非绝热PESs提供了准确的准非绝热表示。为了验证非绝热PESs,使用含时波包方法对C+(2P1/2, 3/2) + H2 (v0 = 0, j0 = 0) → H + CH+(X1Σ+)反应进行了动力学研究。计算了反应概率、积分截面、微分截面和速率常数,并与实验和理论结果进行了比较。非绝热动力学结果与实验数据吻合良好。此外,C+(2P1/2, 3/2) + H2反应中的非绝热效应很显著,因为非绝热结果明显大于绝热值。合理的非绝热动力学结果表明,目前的非绝热PESs可推荐用于任何类型的动力学研究。

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