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Cl + CH₃SH的反应动力学:利用时间分辨傅里叶变换光谱探测HCl的转动和振动分布

Reaction dynamics of Cl+CH3SH: rotational and vibrational distributions of HCl probed with time-resolved Fourier-transform spectroscopy.

作者信息

Cheng Shin-Shin, Wu Yu-Jong, Lee Yuan-Pern

机构信息

Department of Chemistry, National Tsing Hua University, Hsinchu 30013, Taiwan.

出版信息

J Chem Phys. 2004 Jan 22;120(4):1792-800. doi: 10.1063/1.1634558.

Abstract

Rotationally resolved infrared emission spectra of HCl(v=1-3) in the reaction of Cl+CH3SH, initiated with radiation from a laser at 308 nm, are detected with a step-scan Fourier-transform spectrometer. Observed rotational temperature of HCl(v=1-3) decreases with duration of reaction due to collisional quenching; a short extrapolation to time zero based on data in the range 0.25-4.25 micros yields a nascent rotational temperature of 1150+/-80 K. The rotational energy averaged for HCl(v=1-3) is 8.2+/-0.9 kJ mol(-1), yielding a fraction of available energy going into rotation of HCl, fr=0.10+/-0.01, nearly identical to that of the reaction Cl+H(2)S. Observed temporal profiles of the vibrational population of HCl(v=1-3) are fitted with a kinetic model of formation and quenching of HCl(v=1-3) to yield a branching ratio (68+/-5):(25+/-4):(7+/-1) for formation of HCl(v=1):(v=2):(v=3) from the title reaction and its thermal rate coefficient k(2a)=(2.9+/-0.7)x10(-10) cm(3) molecule(-1) s(-1). Considering possible estimates of the vibrational population of HCl(v=0) based on various surprisal analyses, we report an average vibrational energy 36+/-6 kJ mol(-1) for HCl. The fraction of available energy going into vibration of HCl is f(v)=0.45+/-0.08, significantly greater than a value fv=0.33+/-0.06 determined previously for Cl+H2S. Reaction dynamics of Cl+H(2)S and Cl+CH3SH are compared; the adduct CH3S(Cl)H is likely more transitory than the adduct H(2)SCl.

摘要

用步进扫描傅里叶变换光谱仪检测了在308nm激光辐射引发的Cl + CH₃SH反应中HCl(v = 1 - 3)的转动分辨红外发射光谱。由于碰撞猝灭,观察到的HCl(v = 1 - 3)的转动温度随反应持续时间降低;基于0.25 - 4.25微秒范围内的数据外推至时间为零时,得到初始转动温度为1150±80K。HCl(v = 1 - 3)的平均转动能量为8.2±0.9kJ mol⁻¹,得到进入HCl转动的可用能量分数fr = 0.10±0.01,与反应Cl + H₂S的几乎相同。观察到的HCl(v = 1 - 3)振动布居的时间分布用HCl(v = 1 - 3)形成和猝灭的动力学模型进行拟合,得到由标题反应生成HCl(v = 1):(v = 2):(v = 3)的分支比为(68±5):(25±4):(7±1),其热速率系数k(2a) = (2.9±0.7)×10⁻¹⁰cm³分子⁻¹s⁻¹。考虑基于各种意外分析对HCl(v = 0)振动布居的可能估计,我们报告HCl的平均振动能量为36±6kJ mol⁻¹。进入HCl振动的可用能量分数为f(v) = 0.45±0.08,显著大于先前确定的Cl + H₂S的fv = 0.33±0.06。比较了Cl + H₂S和Cl + CH₃SH反应动力学;加合物CH₃S(Cl)H可能比加合物H₂SCl更短暂。

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