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Ultrafast dynamics of photo-excited 2-thiopyridone: Theoretical insights into triplet state population and proton transfer pathways

机译:光兴奋2-硫嘧啶的超快动态:对三联态群体和质子转移途径的理论见解

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摘要

Ultrafast non-adiabatic dynamics of the small heteroaromatic compound 2-thiopyridone has been studied with surface hopping simulations based on multi-configurational quantum chemistry. Initial excitation of the bright S2(π,π*) state is found to promptly relax to S1(n, π*) through in-plane motion. The subsequent dynamics are oppositely driven by out-of-plane motion, which results in both complex population transfers among all the available states and intersystem crossing predominantly through the “El-Sayed forbidden” S1(n, π*) to T2(n, π*) channel, through significant mixing of electronic excitation characters. Despite this complexity, the femto- to picosecond triplet population, expected from several spectroscopic measurements, is well described as a simple exponential decay of the singlet state manifold. No proton transfer is found in the reported trajectories, but two mechanisms for its possible mediation in previously reported experiments are proposed based on the observed structural dynamics: (i) ultrafast intra-molecular transfer driven by the initially coherent in-plane motion and (ii) inter-molecular solvent-mediated transfer driven by the out-of-plane modes that dominate the later motion.
机译:小杂芳族化合物中的超快非绝热动力学2-硫代吡啶酮已经研究与基于多构型的量子化学上表面跳频模拟。明亮S2的初始励磁(π,π*)状态被发现迅速通过在平面内运动到放松S1(π* n个)。随后的动态由相对从动外的平面的运动,这导致在所有既复杂人口转移可用状态和系统间跨越主要通过“埃尔 - Sayed的禁止” S1(N,π*)至T2(N, π*)信道,通过电子激发字符显著混合。尽管这样的复杂性,飞秒到皮秒三重人口,从几个光谱测量预期,有很好的描述为单线态歧管的一个简单的指数衰减。无质子传输在报告轨迹发现,但在先前报道的实验为它可能调解两种机制是基于提出了所观察到的结构动力学:(ⅰ)超快通过最初相干平面内运动和从动分子内转移(ⅱ )分子间溶剂介导的转移由主导后运动出平面外模式驱动。

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