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锥形交叉点处的复杂动力学:电子激发的三氟乙腈自由基阳离子的振动光谱和超快衰变

Complex dynamics at conical intersections: vibronic spectra and ultrafast decay of electronically excited trifluoroacetonitrile radical cation.

作者信息

Mondal T, Mahapatra S

机构信息

School of Chemistry, University of Hyderabad, Hyderabad 500046, India.

出版信息

J Phys Chem A. 2008 Sep 11;112(36):8215-25. doi: 10.1021/jp801138a. Epub 2008 Aug 14.

Abstract

An ab initio quantum dynamical study is performed here to examine the complex nuclear motion underlying the first two photoelectron bands of trifluoroacetonitrile. The highly overlapping structures of the latter are found to originate from transitions to the five lowest electronic states (viz., X(2)E, A(2)A1, B(2)A2, C(2)A1, and D(2)E) of the trifluoroacetonitrile radical cation. The Jahn-Teller (JT) instability of the doubly degenerate X and, D and their pseudo-Jahn-Teller (PJT) interactions with the nondegenerate A, B, and C electronic states along the degenerate vibrational modes lead to multiple multidimensional conical intersections and complex nuclear trajectories through them. It is found that the JT splitting is very weak in the X and relatively stronger in the D state. However, the PJT couplings play the pivotal role in the detailed shape of the vibronic bands of the radical cation. Ultrafast nonradiative decay of electronically excited radical cation has been examined. The findings of this paper are compared with the experimental data and are also discussed in relation to those observed for the methyl cyanide radical cation.

摘要

本文进行了一项从头算量子动力学研究,以考察三氟乙腈前两个光电子能带背后复杂的核运动。发现后者高度重叠的结构源于向三氟乙腈自由基阳离子的五个最低电子态(即X(2)E、A(2)A1、B(2)A2、C(2)A1和D(2)E)的跃迁。双重简并的X和D态的 Jahn-Teller(JT)不稳定性以及它们与非简并的A、B和C电子态沿简并振动模式的准 Jahn-Teller(PJT)相互作用导致多个多维锥形交叉点以及通过它们的复杂核轨迹。发现JT分裂在X态中非常弱,而在D态中相对较强。然而,PJT耦合在自由基阳离子振动电子能带的详细形状中起关键作用。本文研究了电子激发自由基阳离子的超快非辐射衰变。将本文的研究结果与实验数据进行了比较,并结合对甲基氰自由基阳离子的观察结果进行了讨论。

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