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Comparing a Photoinduced Pericyclic Ring Opening and Closure: Differences in the Excited State Pathways

机译:比较光诱导的环开和闭环:激发态途径的差异

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The photochromicity of fulgimides rests on the existence of open (E) and closed ring (C) isomers. As predicted by the Woodward-Hoffmann rules both isomers can photochemically be interconverted. This interconversion has been studied by femtosecond fluorescence and transient absorption spectroscopy. For either direction (E → C cyclization and C → E cycloreversion) a biphasic fluorescence decay on the 0.1-1 ps time scale is observed. The longer time constants of the decays equal the formation times of the photoproducts. The time constants retrieved (0.06 and 0.4 ps for E → C, 0.09 and 2.4 ps for C → E) and the associated spectral signatures differ substantially. This indicates that no common excited-state pathway for the two directions exists, as one would infer from a simple Woodward-Hoffmann consideration. These findings support recent quantum dynamic calculations on the excited-state topology of fulgimides.
机译:fulgimides的光致变色取决于开放(E)和闭环(C)异构体的存在。如伍德沃德-霍夫曼规则所预测的,两种异构体都可以进行光化学互变。飞秒荧光和瞬态吸收光谱已研究了这种相互转换。对于任一方向(E→C环化和C→E环还原),在0.1-1 ps的时间尺度上观察到双相荧光衰减。衰变的较长时间常数等于光产物的形成时间。检索到的时间常数(E→C为0.06和0.4 ps,C→E为0.09和2.4 ps)和相关的频谱特征大不相同。这表明在两个方向上都没有共同的激发态途径,就像从伍德沃德-霍夫曼的简单考虑中推断的那样。这些发现支持了关于激磁酰亚胺的激发态拓扑的最新量子动力学计算。

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