系统间交叉
化学
暗状态
激发态
超快激光光谱学
光谱学
三重态
人口
原子物理学
分子物理学
飞秒
物理
激光器
量子力学
单重态
社会学
人口学
作者
Rocío Borrego‐Varillas,Danielle C. Teles-Ferreira,Artur Nenov,Irene Conti,Lucia Ganzer,Cristian Manzoni,Marco Garavelli,Ana Paula,Giulio Cerullo
摘要
We combined sub-30 fs broadband transient absorption spectroscopy in the ultraviolet with state-of-the-art quantum mechanics/molecular mechanics simulations to study the ultrafast excited-state dynamics of the sulfur-substituted nucleobase 4-thiouracil. We observed a clear mismatch between the time scales for the decay of the stimulated emission from the bright ππ* state (76 ± 16 fs, experimentally elusive until now) and the buildup of the photoinduced absorption of the triplet state (225 ± 30 fs). These data provide evidence that the intersystem crossing occurs via a dark state, which is intermediately populated on the sub-100 fs time scale. Nonlinear spectroscopy simulations, extrapolated from a detailed CASPT2/MM decay path topology of the solvated system together with an excited state mixed quantum-classical nonadiabatic dynamics, reproduce the experimental results and explain the experimentally observed vibrational coherences. The theoretical analysis rationalizes the observed different triplet buildup times of 4- and 2-thiouracil.
科研通智能强力驱动
Strongly Powered by AbleSci AI