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Photochemical dynamics of E-iPr-furylfulgide

机译:E-iPr-呋喃基乙酰胺的光化学动力学

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As an important theoretical step towards unraveling the mechanistic details of the photochemical switching processes in molecules of the fulgide type, we carried out a large-scale, full-dimensional computational study of the ring closure reaction of E-iPr-furylfulgide. Simulated static UV spectra and femtosecond transient spectra are in good agreement with their experimental counterparts. Using surface-hopping photodynamics simulations, we identify three major de-excitation pathways and their interplay. The dominant photochemical pathway (70% of the trajectories) allows for ring closure, while the two minor pathways involve E-Z double bond isomerization rather than cyclization. The relative abundance of the pathways is rationalized by arguments linking structure with dynamics. It should be emphasized, however, that the distinction into three pathways is only a simplified interpretational model, since the actual dynamical trajectories do not strictly follow these idealized pathways but often show mixed behaviour, evolving along two or three of them during the course of the simulation.
机译:作为揭示弗格肽类型分子中光化学转换过程机理细节的重要理论步骤,我们对E-iPr-呋喃夫格肽的闭环反应进行了大规模的全尺寸计算研究。模拟的静态UV光谱和飞秒瞬态光谱与它们的实验对应物非常吻合。使用表面跳变光动力学模拟,我们确定了三种主要的去激励途径及其相互作用。占主导地位的光化学途径(占轨道的70%)允许闭环,而两个次要途径涉及E-Z双键异构化而不是环化。路径的相对丰度通过将结构与动力学联系起来的论点得以合理化。但是,应该强调的是,将三个路径的区别只是一个简化的解释模型,因为实际的动力学轨迹并不严格遵循这些理想的路径,而是经常表现出混杂的行为,在运行过程中会沿着其中的两个或三个演变模拟。

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