碘甲烷
光解
离解(化学)
电离
化学
甲基自由基
异构化
电子电离
共振增强多光子电离
激发
多原子离子
分子
分枝分数
光化学
支化(高分子化学)
分析化学(期刊)
原子物理学
光离子化
激进的
离子
物理化学
物理
有机化学
催化作用
药物化学
量子力学
生物化学
色谱法
作者
Monali Kawade,Sumitra Singh,G. Naresh Patwari
标识
DOI:10.26434/chemrxiv-2022-6q4xb
摘要
The velocity map imaging of the methyl radical formed by 266 nm photolysis of methyl iodide using 213 nm non-resonant multi-photon ionization (NRMPI) method. Comparison of the NRMPI method with the well-known (2+1) resonance multi-photon ionization (REMPI) method at 333.45 nm, which selectively probes Q-branch of band-origin transition of the methyl radical, indicates that the NRMPI method yields a significantly higher I/I* branching ratio in comparison to the REMPI method, even though the velocity map images of both the methods are qualitatively similar. The higher I/I* branching ratio obtained in the NRMPI method is attributed to the non-resonant ionization of higher quanta states of the umbrella bending mode along with higher rotational states of the methyl fragment in the CH3+I dissociation channel. Thus, results obtained in the present work signify that a 213 nm excitation source, which is easily available as the fifth harmonic of Nd:YAG laser, can be used as an alternative and efficient probe to investigate photo-dissociation dynamics of polyatomic molecules.
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