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呋喃的超快光动力学。

Ultrafast photodynamics of furan.

机构信息

Chemical Dynamics Laboratory, RIKEN Advanced Science Institute, Hirosawa 2-1, Wako, Saitama, 351-0198, Japan.

出版信息

J Chem Phys. 2010 Dec 21;133(23):234303. doi: 10.1063/1.3518441.

Abstract

Ultrafast photodynamics of furan has been studied by time-resolved photoelectron imaging (TRPEI) spectroscopy with an unprecedented time resolution of 22 fs. The simulation of the time-dependent photoelectron kinetic energy distribution (PKED) has been performed with ab initio nonadiabatic dynamics "on the fly" in the frame of time-dependent density functional theory. Based on the agreement between experimental and theoretical time-dependent photoelectron signal intensity as well as on PKED, precise time scales of ultrafast internal conversion from S(2) over S(1) to the ground state S(0) of furan have been revealed for the first time. Upon initial excitation of the S(2) state which has π-π* character, a nonadiabatic transition to the S(1) state occurs within 10 fs. Subsequent dynamics invokes the excitation of the C-O stretching and C-O-C out of plane vibrations which lead to the internal conversion to the ground state after 60 fs. Thus, we demonstrate that the TRPEI combined with high level nonadiabatic dynamics calculations provide fundamental insight into ultrafast photodynamics of chemically and biologically relevant chromophores.

摘要

呋喃的超快光动力学已通过具有前所未有的 22fs 时间分辨率的时间分辨光电子成像(TRPEI)光谱法进行了研究。在含时密度泛函理论框架内,通过从头算非绝热动力学“实时”模拟了时间相关光电子动能分布(PKED)。基于实验和理论时间相关光电子信号强度以及 PKED 的一致性,首次揭示了呋喃从 S(2)到 S(1)再到基态 S(0)的超快内转换的精确时间尺度。在最初激发具有π-π*特征的 S(2)态后,在 10fs 内发生非绝热跃迁到 S(1)态。随后的动力学激发了 C-O 伸缩和 C-O-C 面外振动,导致在 60fs 后内转换到基态。因此,我们证明了 TRPEI 与高水平非绝热动力学计算相结合,为化学和生物相关发色团的超快光动力学提供了基本的见解。

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