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Photodissociation dynamics of nitrobenzene and o-nitrotoluene

机译:硝基苯和邻硝基甲苯的光解离动力学

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摘要

[[abstract]]Photodissociation of nitrobenzene at 193, 248, and 266 nm and o-nitrotoluene at 193 and 248 nm was investigated separately using multimass ion imaging techniques. Fragments corresponding to NO and NO2 elimination from both nitrobenzene and o-nitrotoluene were observed. The translational energy distributions for the NO elimination channel show bimodal distributions, indicating two dissociation mechanisms involved in the dissociation process. The branching ratios between NO and NO2 elimination channels were determined to be NO/NO2=0.32±0.12 (193 nm), 0.26±0.12 (248 nm), and 0.4±0.12(266 nm) for nitrobenzene and 0.42±0.12(193 nm) and 0.3±0.12 (248 nm) for o-nitrotoluene. Additional dissociation channels, O atom elimination from nitrobenzene, and OH elimination from o-nitrotoluene, were observed. New dissociation mechanisms were proposed, and the results are compared with potential energy surfaces obtained from ab initio calculations. Observed absorption bands of photodissociation are assigned by the assistance of the ab initio calculations for the relative energies of the triplet excited states and the vertical excitation energies of the singlet and triplet excited states of nitrobenzene and o-nitrotoluene. Finally, the dissociation rates and lifetimes of photodissociation of nitrobenzene and o-nitrotoluene were predicted and compared to experimental results.
机译:[[摘要]]使用多质量离子成像技术分别研究了193、248和266 nm处的硝基苯和193和248 nm处的邻硝基甲苯的光解离。观察到对应于从硝基苯和邻硝基甲苯中消除NO和NO 2的片段。 NO消除通道的平移能量分布显示双峰分布,表明解离过程涉及两种解离机理。确定NO和NO2消除通道之间的支化比分别为NO / NO2 = 0.32±0.12(193 nm),0.26±0.12(248 nm)和0.4±0.12(266 nm)(对于硝基苯)和0.42±0.12(193 nm) )和0.3±0.12(248 nm)(对于邻硝基甲苯)。观察到其他解离通道,从硝基苯消除O原子,从邻硝基甲苯消除OH。提出了新的离解机理,并将结果与​​从头算计算获得的势能面进行了比较。借助从头算的方式为硝基苯和邻硝基甲苯的三重态激发态的相对能以及单重态和三重态激发态的垂直激发能从头算起,确定了光解离的吸收带。最后,预测了硝基苯和邻硝基甲苯的解离速率和光解离寿命,并与实验结果进行了比较。

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    Ming-Fu Lin;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 [[iso]]en
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