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Ultrafast non-adiabatic dynamics of methyl substituted ethylenes: The π3s Rydberg state

机译:甲基取代的乙烯的超快非绝热动力学:π3sRydberg态

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Excited state unimolecular reactions of some polyenes exhibit localization of their dynamics at a single ethylenic double bond. Here we present studies of the fundamental photophysical processes in the ethylene unit itself. Combined femtosecond time-resolved photoelectron spectroscopy (TRPES) and ab initio quantum chemical calculations was applied to the study of excited state dynamics in cis-butene, trans-butene, trimethylethylene, and tetramethylethylene, following initial excitation to their respective π3s Rydberg states. The wavelength dependence of the π3s Rydberg state dynamics of tetramethylethylene was investigated in more detail. The π3s Rydberg to π π* valence state decay rate varies greatly with substituent: the 1,2-di- and tri-methyl substituted ethylenes (cis-butene, trans-butene, and trimethylethylene) show an ultrafast decay (~20 fs), whereas the fully methylated tetramethylethylene shows a decay rate of 2 to 4 orders of magnitude slower. These observations are rationalized in terms of topographical trends in the relevant potential energy surfaces, as found from ab initio calculations: (1) the barrier between the π3s state and the state increases with increasing methylation, and (2) the π3s/ππ* minimum energy conical intersection displaces monotonically away from the π3s Franck-Condon region with increasing methylation. The use of systematic methylation in combination with TRPES and ab initio computation is emerging as an important tool in discerning the excited state dynamics of unsaturated hydrocarbons.
机译:一些多烯的激发态单分子反应在单个烯键式双键处表现出其动力学局部化。在这里,我们介绍乙烯单元本身的基本光物理过程的研究。飞秒时间分辨光电子能谱(TRPES)和从头算起的量子化学计算相结合,被用于研究顺丁烯,反丁烯,三甲基乙烯和四甲基乙烯的激发态动力学,随后分别激发它们各自的π3sRydberg态。详细研究了四甲基乙烯的π3sRydberg态动力学的波长依赖性。 π3sRydberg到ππ*的价态衰减率随取代基的变化而变化:1,2-二甲基和三甲基取代的乙烯(顺丁烯,反丁烯和三甲基乙烯)显示出超快衰减(约20 fs) ,而完全甲基化的四甲基乙烯的衰减速率要慢2至4个数量级。根据从头算的计算,这些观察结果根据相关的势能面的拓扑趋势进行了合理化:(1)π3s状态与该状态之间的势垒随着甲基化程度的增加而增加,以及(2)π3s/ππ*最小值随着甲基化程度的增加,能量圆锥形相交点从π3s的Franck-Condon区单调移开。系统甲基化结合TRPES和从头算的应用正在成为识别不饱和烃激发态动力学的重要工具。

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