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H和OH自由基从1-硝基丙烷夺取氢原子反应的动力学研究

Kinetic Study on the H-Abstraction Reactions from 1-Nitropropane by H and OH Radicals.

作者信息

He Li, Li Chong, Zhang Zhenpeng, Shang Yanlei, Zhao Haiyong, Luo Sheng-Nian

机构信息

School of Physical Science and Technology, Southwest Jiaotong University, Chengdu, Sichuan 610031, PR China.

The Peac Institute of Multiscale Sciences, Chengdu, Sichuan 610027, PR China.

出版信息

J Phys Chem A. 2024 Nov 21;128(46):10009-10019. doi: 10.1021/acs.jpca.4c06113. Epub 2024 Nov 7.

DOI:10.1021/acs.jpca.4c06113
PMID:39508750
Abstract

To improve the comprehension of the combustion kinetics of 1-nitropropane (1-NP), the H-abstraction reactions from 1-NP by H and OH radicals are theoretically explored using the canonical variational transition-state theory combined with the multistructural torsional anharmonicity and small-curvature tunneling corrections (MS-CVT/SCT). The M08-HX/cc-pVTZ method is adopted for geometry optimizations and frequency calculations due to its effective performance in describing the current reaction systems with an average mean unsigned deviation of 0.95 kcal mol against the benchmark by the high-level DLPNO-CCSD(T)/CBS(T-Q) method. The rate constants for the investigated reactions are calculated using the MS-CVT/SCT method at 200-2000 K, and a good agreement is achieved by comparing our calculations with the available literature data. The rate constant calculations show that the multistructural torsional anharmonicity, variational effect, and tunneling effect have different influences on the H-abstraction reactions 1-NP + H/OH, and the reaction channel at the C position is the most important above the room temperature. With our calculations, a literature combustion kinetic model of 1-NP is revised, and the new model demonstrates improved performance across most conditions. Sensitivity analysis demonstrates that the H-abstraction reaction channel, 1-NP + OH = CHCHCHNO + HO, alters the combustion kinetics of 1-NP and plays an important role in controlling its ignition process.

摘要

为了提高对1-硝基丙烷(1-NP)燃烧动力学的理解,采用正则变分过渡态理论结合多结构扭转非谐性和小曲率隧道效应校正(MS-CVT/SCT),从理论上研究了H和OH自由基从1-NP中夺取H的反应。由于M08-HX/cc-pVTZ方法在描述当前反应体系方面具有有效性能,相对于高水平的DLPNO-CCSD(T)/CBS(T-Q)方法的基准,平均平均无符号偏差为0.95 kcal mol,因此采用该方法进行几何优化和频率计算。使用MS-CVT/SCT方法在200-2000 K下计算了所研究反应的速率常数,通过将我们的计算结果与现有文献数据进行比较,取得了良好的一致性。速率常数计算表明,多结构扭转非谐性、变分效应和隧道效应对1-NP + H/OH的夺氢反应有不同影响,且在室温以上,C位的反应通道最为重要。通过我们的计算,修正了1-NP的文献燃烧动力学模型,新模型在大多数条件下表现出更好的性能。敏感性分析表明,夺氢反应通道1-NP + OH = CHCHCHNO + HO改变了1-NP的燃烧动力学,在控制其着火过程中起重要作用。

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