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关于氢提取反应N2H4 + R→N2H3 + RH(R = NH2,CH3)的直接动力学研究

Direct dynamics study on the hydrogen abstraction reactions N2H4 + R-->N2H3 + RH (R=NH2, CH3).

作者信息

Li Qian Shu, Zhang Xin

机构信息

The Institute for Chemical Physics, Beijing Institute of Technology, Beijing 100081, People's Republic of China.

出版信息

J Chem Phys. 2006 Aug 14;125(6):64304. doi: 10.1063/1.2217949.

Abstract

We present a direct ab initio dynamics study on the hydrogen abstraction reactions N(2)H(4)+R-->N(2)H(3)+RH (R=NH(2),CH(3)), which are predicted to have six possible reaction channels for NH(2) abstraction and four for CH(3) abstraction caused by the different N(2)H(4) isomers and various attacking orientations of foreign radical to N(2)H(4). The structures and frequencies at the stationary points and the points along the minimum energy paths (MEPs) of all reaction channels are obtained at the UMP2(full)6-31+G(d,p) level of theory. Energetic information of stationary points and the points along the MEPs is further refined by means of MC-QCISD method. The rate constants of these channels are calculated using the improved canonical variational transition-state theory with the small-curvature tunneling correction (ICVT/SCT) method. The calculated results show that the favorable reaction channels are channels (n1) and (n4) as well as (c1) and (c3) (refer to Scheme 1) in the whole temperature range. The total ICVT/SCT rate constants of all channels for the two reactions at the MC-QCISDUMP2(full)6-31+G(d,p) level are both in good agreement with the available experimental data, and corresponding three-parameter expressions of k(ICVTSCT) in 220-3000 K are fitted as 6.46 x 10(-15)(T298)(3.60) exp(-386T) cm(3) mol(-1) s(-1) for NH(2) abstraction and 1.04 x 10(-14)(T298)(4.00) exp(-2037T) cm(3) mol(-1) s(-1) for CH(3) abstraction. Additionally, the long range interaction between the H atom of X-H bond in foreign radicals and the lone pair on the nonreactive N atom of the transition states is further discussed to explain the various transition-state numbers of the two similar hydrogen abstraction reactions.

摘要

我们对氢提取反应N₂H₄ + R → N₂H₃ + RH(R = NH₂,CH₃)进行了直接的从头算动力学研究,由于N₂H₄的不同异构体以及外来自由基对N₂H₄的各种攻击取向,预计该反应对于NH₂提取有六个可能的反应通道,对于CH₃提取有四个反应通道。在UMP2(full)/6 - 31 + G(d,p)理论水平上获得了所有反应通道的驻点以及沿最小能量路径(MEP)各点的结构和频率。驻点以及沿MEP各点的能量信息通过MC - QCISD方法进一步优化。使用改进的正则变分过渡态理论结合小曲率隧道效应校正(ICVT/SCT)方法计算这些通道的速率常数。计算结果表明,在整个温度范围内,有利的反应通道是通道(n1)和(n4)以及(c1)和(c3)(参见方案1)。在MC - QCISD/UMP2(full)/6 - 31 + G(d,p)水平上,两个反应所有通道的总ICVT/SCT速率常数均与现有实验数据吻合良好,并且拟合了220 - 3000 K范围内k(ICVT/SCT)的相应三参数表达式,对于NH₂提取为6.46×10⁻¹⁵(T/298)³·⁶⁰ exp( - 386/T) cm³ mol⁻¹ s⁻¹,对于CH₃提取为1.04×10⁻¹⁴(T/298)⁴·⁰⁰ exp( - 2037/T) cm³ mol⁻¹ s⁻¹。此外,还进一步讨论了外来自由基中X - H键的H原子与过渡态中非反应性N原子上孤对电子之间的长程相互作用,以解释这两个类似氢提取反应的不同过渡态数量。

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