Kim Hahkjoon, Park Jiho, Niday Tracy C, North Simon W
Department of Chemistry, Texas A&M University, P.O. Box 30012, College Station, Texas 77842, USA.
J Chem Phys. 2005 Nov 1;123(17):174303. doi: 10.1063/1.2083487.
We have studied the wavelength-dependent photodissociation dynamics of jet-cooled ClO radical from 235 to 291 nm using velocity map ion imaging. We find that Cl(2P(3/2))+O(1D(2)) is the dominant channel above the O(1D(2)) threshold with minor contributions from the Cl(2P(J))+O(3P(J)) and Cl(2P(1/2))+O(1D(2)) channels. We have measured the photofragment angular distributions for each dissociation channel and find that the A 2pi state reached via a parallel transition carries most of the oscillator strength above the O(1D(2)) threshold. The formation of O(3P(J)) fragments with positive anisotropy is evidence of curve crossing from the A 2pi state to one of several dissociative states. The curve crossing probability increases with wavelength in good agreement with previous theoretical calculations. We have directly determined the O(1D(2)) threshold to be 38,050+/-20 cm(-1) by measuring O(1D(2)) quantum yield in the wavelength range of 260-270 nm. We also report on the predissociation dynamics of ClO below the O(1D(2)) threshold. We find that the branching ratio of Cl(2P(3/2))/Cl(2P(1/2)) is 1.5+/-0.1 at both 266 and 291 nm. The rotational depolarization of the anisotropy parameters of the Cl(2P(3/2)) fragments provides predissociation lifetimes of 1.5+/-0.2 ps for the 9-0 band and 1.0+/-0.4 ps for the 8-0 band, in reasonable agreement with previous spectroscopic and theoretical studies.
我们使用速度成像技术研究了喷射冷却的ClO自由基在235至291纳米波长范围内的光解离动力学。我们发现,在O(1D(2))阈值以上,Cl(2P(3/2))+O(1D(2))是主要通道,Cl(2P(J))+O(3P(J))和Cl(2P(1/2))+O(1D(2))通道的贡献较小。我们测量了每个解离通道的光碎片角分布,发现通过平行跃迁到达的A 2π态在O(1D(2))阈值以上携带了大部分振子强度。具有正各向异性的O(3P(J))碎片的形成是从A 2π态到几个解离态之一的曲线交叉的证据。曲线交叉概率随波长增加,与先前的理论计算结果吻合良好。通过测量260-270纳米波长范围内的O(1D(2))量子产率,我们直接确定O(1D(2))阈值为38,050±20厘米-1。我们还报告了O(1D(2))阈值以下ClO的预解离动力学。我们发现,在266和291纳米处,Cl(2P(3/2))/Cl(2P(1/2))的分支比均为1.5±0.1。Cl(2P(3/2))碎片各向异性参数的旋转去极化给出了9-0带的预解离寿命为1.5±0.2皮秒,8-0带的预解离寿命为1.0±0.4皮秒,与先前的光谱和理论研究结果合理吻合。