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RH + HO 反应的势垒高度、反应能和键离解能的耦合簇理论、密度泛函理论和扩散量子蒙特卡罗方法。

Barrier heights, reaction energies and bond dissociation energies for RH + HO reactions with coupled-cluster theory, density functional theory and diffusion quantum Monte Carlo methods.

机构信息

Department of Physics, Shaanxi University of Science and Technology, Xi'an, 710021, P. R. China.

School of Science, Xi'an University of Posts and Telecommunications, Xi'an, 710121, P. R. China.

出版信息

Phys Chem Chem Phys. 2022 Dec 21;25(1):341-350. doi: 10.1039/d2cp04463c.

Abstract

Hydrogen abstraction reactions by the HO radical from hydrocarbon molecules are an important class of reactions in the autoignition of hydrocarbon fuels. Performance of DLPNO-CC and DFT methods using three hybrids and four double hybrids as well as FN-DMC with the single-Slater-Jastrow trial wavefunction on barrier heights and reaction energies of RH + HO reactions as well as bond dissociation energies of the involved X-H molecules is evaluated by comparison with the highly accurate CCSD(T)-F12b/CBS results in this study. Our results show that the DLPNO-CCSD(T)-F12 method can achieve highly accurate barrier heights, reaction energies and X-H bond energies for RH + HO reactions at a relatively low computational cost, and it is applicable to the H-abstraction reactions of larger molecules. Among all DFAs, MN15 and the employed double hybrids can achieve accurate barrier heights and reaction energies with MADs of less than or around 2 kJ mol, but their error on X-H bond energies is more pronounced. Only DSD-BLYP and DSD-PBEB95 can provide X-H bond energies with MADs less than 4 kJ mol. Considering dispersion correction in DFT calculations does not improve these barrier heights and reaction energies. The error of FN-DMC on barrier heights and reaction energies is slightly larger than that of MN15 and those of double hybrids, but it can achieve results within chemical accuracy for these reactions and the X-H bond energies.

摘要

HO 自由基从烃分子中夺取氢的反应是烃燃料自动点火中一类重要的反应。本研究通过与高准确度 CCSD(T)-F12b/CBS 结果的比较,评估了 DLPNO-CC 和 DFT 方法(使用三种混合泛函和四种双杂化泛函以及单 Slater-Jastrow 试探波函数的 FN-DMC)在 RH + HO 反应的势垒高度和反应能以及涉及的 X-H 分子的键离解能方面的性能。结果表明,DLPNO-CCSD(T)-F12 方法在相对较低的计算成本下,可实现 RH + HO 反应的高度准确的势垒高度、反应能和 X-H 键能,适用于较大分子的 H 夺取反应。在所有 DFA 中,MN15 和所采用的双杂化泛函可以以 MAD 小于或约 2 kJ mol 的精度得到准确的势垒高度和反应能,但它们在 X-H 键能上的误差更为显著。只有 DSD-BLYP 和 DSD-PBEB95 可以提供 MAD 小于 4 kJ mol 的 X-H 键能。考虑到在 DFT 计算中加入色散校正并不能改善这些势垒高度和反应能。FN-DMC 在势垒高度和反应能上的误差略大于 MN15 和双杂化泛函,但对于这些反应和 X-H 键能,它可以达到化学精度的结果。

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