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从头算耦合簇和扩展多组态量子化学动力学方法研究苯胺激发态的势能面和弛豫途径。

New insight into the potential energy landscape and relaxation pathways of photoexcited aniline from CASSCF and XMCQDPT2 electronic structure calculations.

机构信息

Laboratoire Interdisciplinaire Carnot de Bourgogne UMR 5209 CNRS, Université de Bourgogne, BP 47870, F-21078 Dijon, France.

出版信息

Phys Chem Chem Phys. 2014 Feb 21;16(7):3122-33. doi: 10.1039/c3cp54418d.

Abstract

There have been a number of recent experimental investigations of the nonadiabatic relaxation dynamics of aniline following excitation to the first three singlet excited states, 1(1)ππ*, 1(1)π3s/πσ* and 2(1)ππ*. Motivated by differences between the interpretations of experimental observations, we have employed CASSCF and XMCQDPT2 calculations to explore the potential energy landscape and relaxation pathways of photoexcited aniline. We find a new prefulvene-like MECI connecting the 1(1)ππ* state with the GS in which the carbon-atom carrying the amino group is distorted out-of-plane. This suggests that excitation above the 1(1)π3s/πσ* vertical excitation energy could be followed by electronic relaxation from the 1(1)ππ* state to the ground-electronic state through this MECI. We find a MECI connecting the 1(1)π3s/πσ* and 1(1)ππ* states close to the local minimum on 1(1)π3s/πσ* which suggests that photoexcitation to the 1(1)π3s/πσ* state could be followed by relaxation to the 1(1)ππ* state and to the dissociative component of the 1(1)π3s/πσ* state. We also find evidence for a new pathway from the 2(1)ππ* state to the ground electronic state that is likely to pass through a three-state conical intersection involving the 2(1)ππ*, 1(1)π3s/πσ* and 1(1)ππ* states.

摘要

最近有许多关于苯胺在被激发到第一、第二和第三单重激发态 1(1)ππ*、1(1)π3s/πσ和 2(1)ππ后非绝热弛豫动力学的实验研究。受实验观测解释差异的启发,我们采用 CASSCF 和 XMCQDPT2 计算来探索光激发苯胺的势能面和弛豫途径。我们发现一个新的预富烯类似的 MECI 连接 1(1)ππ态和 GS,其中带有氨基的碳原子是平面外扭曲的。这表明,在 1(1)π3s/πσ垂直激发能以上激发后,电子可能通过这个 MECI 从 1(1)ππ态松弛到基态。我们发现 1(1)π3s/πσ和 1(1)ππ态之间有一个 MECI,靠近 1(1)π3s/πσ的局部最小值,这表明光激发到 1(1)π3s/πσ态后可能通过弛豫到 1(1)ππ态和 1(1)π3s/πσ态的离解部分。我们还发现了从 2(1)ππ态到基态的新途径的证据,该途径可能通过涉及 2(1)ππ*、1(1)π3s/πσ和 1(1)ππ态的三态锥形交叉来实现。

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