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Photodissociation of ethylbenzene and n-propylbenzene in a molecular beam

机译:分子束中乙苯和正丙基苯的光解离

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The photodissociation of jet-cooled ethylkbenzene and n-propylbenzene at both 193 and 248nm was studied using vacuum ultraviolet photoionization/multimass ion imaging techniques. The photofragment translational energy distributions from both the molecules obtained at 193 nm show that the probability of portioning energy to product translational energy decreases monotonically with increasing translational energy. They indicate that the dissociation occurs from the ground electronic state. However, the photofragment translational energy distributions from both molecules obtained at 248 nm contain a fast and a slow component. 75% of ethylbenzene and 80% of n-propylbenzene following the 248 nm photoexcitation dissociate from electronic excited state, resulting in the fast component. The remaining 25% of ethylbenzene and 20% of n-propylbenzene dissociate through the ground electronic state, giving rise to the slow component. A comparison with an ab initio calculation suggests that the dissociation from the first triplet state corresponds to the fast component in translational energy distribution.
机译:使用真空紫外光电离/多质量离子成像技术研究了喷射冷却的乙基苯和正丙基苯在193和248nm处的光解离。来自在193 nm处获得的两个分子的光碎片段平移能量分布表明,将能量分配为产物平移能量的可能性随平移能量的增加而单调降低。它们表明离解是从基态电子状态发生的。但是,在248 nm处获得的两个分子的光碎片段平移能量分布都包含快速成分和缓慢成分。 248 nm光激发后,有75%的乙苯和80%的正丙基苯从电子激发态解离,形成快速组分。剩余的25%的乙苯和20%的正丙基苯通过基态电子离解,产生慢速组分。与从头算计算的比较表明,与第一个三重态的解离对应于平移能量分布中的快速分量。

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