Jenkins Andrew J, Vacher Morgane, Bearpark Michael J, Robb Michael A
Department of Chemistry, Imperial College London, London SW7 2AZ, United Kingdom.
J Chem Phys. 2016 Mar 14;144(10):104110. doi: 10.1063/1.4943273.
We simulate electron dynamics following ionization in 2-phenyl-ethyl-amine and 2-phenylethyl-N,N-dimethylamine as examples of systems where 3 coupled cationic states are involved. We study two nuclear effects on electron dynamics: (i) coupled electron-nuclear motion and (ii) nuclear spatial delocalization as a result of the zero-point energy in the neutral molecule. Within the Ehrenfest approximation, our calculations show that the coherent electron dynamics in these molecules is not lost as a result of coupled electron-nuclear motion. In contrast, as a result of nuclear spatial delocalization, dephasing of the oscillations occurs on a time scale of only a few fs, long before any significant nuclear motion can occur. The results have been rationalized using a semi-quantitative model based upon the gradients of the potential energy surfaces.
我们以2-苯基乙胺和2-苯基乙基-N,N-二甲胺为例,模拟了涉及3个耦合阳离子态的体系电离后的电子动力学。我们研究了两种对电子动力学的核效应:(i)电子-核耦合运动和(ii)中性分子零点能导致的核空间离域。在埃伦费斯特近似下,我们的计算表明,这些分子中的相干电子动力学不会因电子-核耦合运动而丧失。相反,由于核空间离域,振荡的退相仅在几飞秒的时间尺度上发生,远在任何显著的核运动发生之前。已使用基于势能面梯度的半定量模型对结果进行了合理解释。