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迈向用于涉及无势垒基元步骤的气相反应动力学的精确黑箱工具。

Toward an Accurate Black-Box Tool for the Kinetics of Gas-Phase Reactions Involving Barrier-less Elementary Steps.

作者信息

Crisci Luigi, Di Grande Silvia, Cavallotti Carlo, Barone Vincenzo

机构信息

Scuola Normale Superiore di Pisa, Piazza dei Cavalieri 7, I-56126 Pisa, Italy.

Department of Chemical Sciences, University of Napoli Federico II, Complesso Universitario di M.S. Angelo, via Cintia 21, I-80126 Napoli, Italy.

出版信息

J Chem Theory Comput. 2023 Nov 14;19(21):7626-7639. doi: 10.1021/acs.jctc.3c00857. Epub 2023 Oct 25.

Abstract

An enhanced computational protocol has been devised for the accurate characterization of gas-phase barrier-less reactions in the framework of the reaction-path (RP) and variable reaction coordinate variational transition-state theory. In particular, the synergistic combination of density functional theory and Monte Carlo sampling to optimize reactive fluxes led to a reliable yet effective computational workflow. A black-box strategy has been developed for selecting the most suited density functional with reference to a high-level one-dimensional reference potential. At the same time, different descriptions of hindered rotations are automatically selected, depending on the corresponding harmonic frequencies along the RP. The performance of the new tool is investigated by means of two prototypical reactions involving different degrees of static and dynamic correlation, namely, HS + Cl and CH + CH. The remarkable agreement of the computed kinetic parameters with the available experimental data confirms the accuracy and robustness of the proposed approach. Together with their intrinsic interest, these results also pave the way toward systematic investigations of gas-phase reactions involving barrier-less elementary steps by a reliable, user-friendly tool, which can be confidently used also by nonspecialists.

摘要

已经设计了一种增强的计算协议,用于在反应路径(RP)和可变反应坐标变分过渡态理论的框架内准确表征气相无势垒反应。特别是,密度泛函理论和蒙特卡罗采样的协同结合以优化反应通量,产生了一种可靠且有效的计算工作流程。已经开发了一种黑箱策略,用于参考高级一维参考势来选择最合适的密度泛函。同时,根据沿反应路径的相应谐波频率,自动选择受阻旋转的不同描述。通过涉及不同程度的静态和动态相关性的两个典型反应,即HS + Cl和CH + CH,研究了新工具的性能。计算得到的动力学参数与现有实验数据的显著一致性证实了所提出方法的准确性和稳健性。这些结果除了具有内在的研究价值外,还为通过一种可靠、用户友好的工具系统研究涉及无势垒基本步骤的气相反应铺平了道路,非专业人员也可以放心使用该工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4157/10653117/c06d0c709378/ct3c00857_0001.jpg

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