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通过飞秒时间分辨光电子成像技术揭示 2,4-二氟苯胺光激发后的电子弛豫动力学。

Unraveling the electronic relaxation dynamics in photoexcited 2,4-difluoroaniline via femtosecond time-resolved photoelectron imaging.

机构信息

State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071, China.

出版信息

J Chem Phys. 2018 Apr 14;148(14):144311. doi: 10.1063/1.5024255.

Abstract

Time-resolved photoelectron imaging is employed to investigate the relaxation dynamics of the lowest two excited electronic states S(ππ*) and S(π3s/πσ*) in 2,4-difluoroaniline (24DFA). As the S(ππ*) state is populated directly following 289 nm excitation, the population undergoes ultrafast intramolecular vibrational redistribution on a 540 fs time scale, followed by efficient intersystem crossing from S(ππ*) to the triplet state within 379 ps, and the subsequent slower deactivation process of the triplet state. For excitation to the S(π3s/πσ*) state at 238 nm, the population probably bifurcates into two decay channels. The dominant channel with 84 fs involves ultrafast internal conversion to the S(ππ*) state, from which it relaxes to the electronic ground state on a 116 ps time scale. The other appears to involve motion along the S(π3s/πσ*) potential energy surface. Our data also determine experimentally the electronic energies of S(π3s/πσ*), S(ππ*), and several Rydberg states in 24DFA.

摘要

采用时间分辨光电子成像技术研究了 2,4-二氟苯胺(24DFA)中最低的两个激发电子态 S(ππ*)和 S(π3s/πσ*)的弛豫动力学。由于 S(ππ*)态是在 289nm 激发后直接产生的,因此其在 540fs 的时间尺度上经历了超快的分子内振动再分配,随后在 379ps 内从 S(ππ*)高效地发生系间穿越至三重态,随后是三重态的后续较慢的失活过程。对于在 238nm 处激发到 S(π3s/πσ*)态,可能会发生两种衰减途径。主要的途径具有 84fs 的超快内转换到 S(ππ*)态,从该态弛豫到电子基态的时间为 116ps。另一种途径似乎涉及沿 S(π3s/πσ*)势能面的运动。我们的数据还实验确定了 24DFA 中 S(π3s/πσ*)、S(ππ*)和几个里德堡态的电子能。

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