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关于OH自由基与HOX(X = F、Cl和Br)的氢提取反应的直接从头算动力学研究。

Direct ab initio dynamics studies on the hydrogen-abstraction reactions of OH radicals with HOX (X = F, Cl, and Br).

作者信息

Wang Li, Liu Jing-Yao, Li Ze-Sheng, Sun Chia-Chung

机构信息

Institute of Theoretical Chemistry, State Key Laboratory of Theoretical and Computational Chemistry, Jilin University, Changchun 130023, People's Republic of China.

出版信息

J Comput Chem. 2004 Mar;25(4):558-64. doi: 10.1002/jcc.10403.

Abstract

The hydrogen abstract reactions of OH radicals with HOF (R1), HOCl (R2), and HOBr (R3) have been studied systematically by a dual-level direct-dynamics method. The geometries and frequencies of all the stationary points are optimized at the MP2/6-311+G(2d, 2p) level of theory. A hydrogen-bonded complex is located at the product channel for the OH + HOBr reaction. To improve the energetics information along the minimum energy path (MEP), single-point energy calculations are carried out at the CCSD(T)/6-311++G(3df, 3pd) level of theory. Interpolated single-point energy (ISPE) method is employed to correct the energy profiles for the three reactions. It is found that neither the barrier heights (DeltaE) nor the H-O bond dissociation energies [D(H-O)] exhibit any clear-cut linear correlations with the halogen electronegative. The decrease of DeltaE and D(H-O) for the three reactions are in order of HOF > HOBr > HOCl. Rate constants for each reaction are calculated by canonical variational transition-state theory (CVT) with a small-curvature tunneling correction (SCT) within 200-2000 K. The agreement of the rate constants with available experimental values for reactions R2 and R3 at 298 K is good. Our results show that the variational effect is small while the tunneling correction has an important contribution in the calculation of rate constants in the low-temperature range. Due to the lack of the kinetic data of these reactions, the present theoretical results are expected to be useful and reasonable to estimate the dynamical properties of these reactions over a wide temperature range where no experimental value is available.

摘要

采用双水平直接动力学方法系统研究了OH自由基与HOF(R1)、HOCl(R2)和HOBr(R3)的氢提取反应。所有驻点的几何结构和频率在MP2/6-311+G(2d, 2p)理论水平上进行优化。对于OH + HOBr反应,在产物通道处发现了一个氢键复合物。为了改善沿最小能量路径(MEP)的能量信息,在CCSD(T)/6-311++G(3df, 3pd)理论水平上进行单点能量计算。采用内插单点能量(ISPE)方法对这三个反应的能量分布进行校正。结果发现,势垒高度(ΔE)和H-O键解离能[D(H-O)]均与卤素电负性不存在明显的线性相关性。这三个反应的ΔE和D(H-O)的降低顺序为HOF > HOBr > HOCl。通过正则变分过渡态理论(CVT)并结合小曲率隧道效应校正(SCT)计算了200 - 2000 K范围内各反应的速率常数。计算得到的反应R2和R3在298 K时的速率常数与现有实验值吻合良好。结果表明,变分效应较小,而隧道效应校正在低温范围内速率常数的计算中具有重要贡献。由于缺乏这些反应的动力学数据,预计目前的理论结果对于估算在没有实验值的宽温度范围内这些反应的动力学性质是有用且合理的。

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