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CH3 + HCl和CH3 + Cl2反应中的速率常数及氢同位素取代效应

Rate constants and hydrogen isotope substitution effects in the CH3 + HCl and CH3 + Cl2 reactions.

作者信息

Eskola Arkke J, Timonen Raimo S, Marshall Paul, Chesnokov Evgeni N, Krasnoperov Lev N

机构信息

Laboratory of Physical Chemistry, P.O. Box 55, FIN-00014 University of Helsinki, Finland.

出版信息

J Phys Chem A. 2008 Aug 14;112(32):7391-401. doi: 10.1021/jp801999w. Epub 2008 Jul 23.

Abstract

The kinetics of the CH3 + Cl2 (k2a) and CD3 + Cl2 (k2b) reactions were studied over the temperature range 188-500 K using laser photolysis-photoionization mass spectrometry. The rate constants of these reactions are independent of the bath gas pressure within the experimental range, 0.6-5.1 Torr (He). The rate constants were fitted by the modified Arrhenius expression, k2a = 1.7 x 10(-13)(T/300 K)(2.52)exp(5520 J mol(-1)/RT) and k2b = 2.9 x 10(-13)(T/300 K)(1.84)exp(4770 J mol(-1)/RT) cm(3) molecule(-1) s(-1). The results for reaction 2a are in good agreement with the previous determinations performed at and above ambient temperature. Rate constants of the CH3 + Cl2 and CD3 + Cl2 reactions obtained in this work exhibit minima at about 270-300 K. The rate constants have positive temperature dependences above the minima, and negative below. Deuterium substitution increases the rate constant, in particular at low temperatures, where the effect reaches ca. 45% at 188 K. These observations are quantitatively rationalized in terms of stationary points on a potential energy surface based on QCISD/6-311G(d,p) geometries and frequencies, combined with CCSD(T) energies extrapolated to the complete basis set limit. 1D tunneling as well as the possibility of the negative energies of the transition state are incorporated into a transition state theory analysis, an approach which also accounts for prior experiments on the CH3 + HCl system and its various deuterated isotopic substitutions [Eskola, A. J.; Seetula, J. A.; Timonen, R. S. Chem. Phys. 2006, 331, 26].

摘要

利用激光光解-光电离质谱法研究了188 - 500 K温度范围内CH₃ + Cl₂(k₂a)和CD₃ + Cl₂(k₂b)反应的动力学。在0.6 - 5.1 Torr(He)的实验压力范围内,这些反应的速率常数与缓冲气体压力无关。速率常数用修正的阿仑尼乌斯表达式拟合,k₂a = 1.7×10⁻¹³(T/300 K)²·⁵² exp(5520 J mol⁻¹/RT)和k₂b = 2.9×10⁻¹³(T/300 K)¹·⁸⁴ exp(4770 J mol⁻¹/RT) cm³ molecule⁻¹ s⁻¹。反应2a的结果与先前在环境温度及以上进行的测定结果吻合良好。本工作中获得的CH₃ + Cl₂和CD₃ + Cl₂反应的速率常数在约270 - 300 K处出现最小值。在最小值以上,速率常数具有正的温度依赖性,在最小值以下则具有负的温度依赖性。氘取代增加了速率常数,特别是在低温下,在188 K时该效应达到约45%。基于QCISD/6 - 311G(d,p)几何结构和频率以及外推到完整基组极限的CCSD(T)能量,根据势能面上的驻点对这些观察结果进行了定量合理化。一维隧穿以及过渡态负能量的可能性被纳入过渡态理论分析中,该方法也考虑了先前关于CH₃ + HCl体系及其各种氘代同位素取代的实验[埃斯科拉,A. J.;西图拉,J. A.;蒂莫宁,R. S. 化学物理学报2006, 331, 26]。

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