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乙烯基A2A″电子态的振转分析
引用本文:周晓国,刘世林.乙烯基A2A″电子态的振转分析[J].物理化学学报,2006,22(4):481-485.
作者姓名:周晓国  刘世林
作者单位:Hefei National Laboratory for Physical Sciences at Microscale, Department of Chemical Physics, University of Science and Technology of China, Hefei 230026, P. R. China
摘    要:通过193 nm光解丁烯酮分子产生乙烯基自由基(?C2H3). 经射流冷却后, 以另一束可调谐激光光解?C2H3, 生成的氢原子碎片经共振增强多光子电离(REMPI)过程, 记录氢离子信号随光解波长变化, 得到21180~21320 cm-1范围内乙烯基 A2A″(µ′5,6,8=1)←X2A′(µ″=0)跃迁的振转光谱. 结合量化计算和光谱拟合, 对该段光谱进行了细致的振转分析, 确定了各振动谱带位置, 识别了其中主要的转动跃迁. 由光谱拟合得到各振动能级的预解离寿命, 讨论了其与振动模式及激发转动量子数的依赖关系, 证实了理论预测的乙烯基A2A″电子态的面内解离机制.

关 键 词:乙烯基自由基  共振增强多光子电离  预解离  
收稿时间:2005-09-30
修稿时间:2005-12-07

Ro-vibrational Analysis of the (A) 2A″ Electronic State of the Vinyl Radical
ZHOU Xiao-Guo,LIU Shi-Lin.Ro-vibrational Analysis of the (A) 2A″ Electronic State of the Vinyl Radical[J].Acta Physico-Chimica Sinica,2006,22(4):481-485.
Authors:ZHOU Xiao-Guo  LIU Shi-Lin
Institution:Hefei National Laboratory for Physical Sciences at Microscale, Department of Chemical Physics, University of Science and Technology of China, Hefei 230026, P. R. China
Abstract:Vinyl radical was generated by photolysing methyl vinyl ketone at 193 nm, then was photodissociated by another tunable laser in the 21180~21320 cm?1 range. The dissociated H atom fragments were ionized and detected by resonance-enhanced multiphoton ionization (REMPI) processes. The ro-vibrational action spectra of the A2A″(µ′5,6,8=1)←X2A′(µ″=0) of vinyl radical were recorded by monitoring the H+ ion intensity with dissociation laser wavelength. The corresponding analyses were obtained with the aid of quantum chemical calculations and spectroscopic simulations, vibrational bands and main rotational transitions were definitely assigned. Additionally, the predissociative lifetime was derived from the simulated linewidth, and its dependence on the vibrational mode and rotational quantum number was discussed. The in-plane dissociation mechanism of the state predicted by theoretical studies was confirmed.
Keywords:Vinyl radical  Resonance-enhanced multiphoton ionization (REMPI)  Pre-dissociation
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