Zheng Xiaolei, Zhai Gaohong, Gao Wanqing, Lei Yibo, Yu Le, Zhu Chaoyuan
Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of Ministry of Education, College of Chemistry & Materials Science and Shaanxi key Laboratory of Physico-Inorganic Chemistry, Northwest University, Xi'an 710069, P. R. China.
Institute of Molecular Science, Department of Applied Chemistry, and Center for Interdisciplinary Molecular Science, National Chiao-tung University, Hsinchu 300, Taiwan.
Phys Chem Chem Phys. 2016 Apr 7;18(13):8971-9. doi: 10.1039/c6cp00514d.
We have employed the SA2-CAS(4,4)/6-31G ab initio method together with an on-the-fly global-switching trajectory surface hopping algorithm to simulate photoisomerization reaction dynamics from reactant trans, trans-1,4-diphenyl-1,3-butadiene (DPB) to products cis,trans-DPB and cis,cis-DPB. This topic has been extensively studied experimentally and the present theoretical study is the first to simulate DPB photoisomerization reaction dynamics as far as we know. With total 600 sampling trajectories, 300 actively contribute to isomerization reaction via two conical intersections between the electronic ground and the first excited states. Simulated quantum yields of photoisomerization to cis, trans-DPB and cis, cis-DPB are 0.09 and 0.045, which are in good agreement with the experimental values of 0.07-0.25 and 0.02, respectively. The lifetime of the first excited state is estimated as 702 fs. The present simulation has shown two reactive photoisomerization mechanisms, namely one bond twist (OBT) and bicycle pedal (BP), and two non-reactive photoisomerization mechanisms, namely single bond torsion (SBT) and reverse torsion (RT) with respect to the central backbone CC bonds. We believe that the present theoretical work can benefit the experiments on photoisomerization of DPB derivates.
我们采用SA2 - CAS(4,4)/6 - 31G从头算方法,并结合一种实时全局切换轨迹表面跳跃算法,来模拟从反应物反式,反式 - 1,4 - 二苯基 - 1,3 - 丁二烯(DPB)到产物顺式,反式 - DPB和顺式,顺式 - DPB的光异构化反应动力学。这个课题已经得到了广泛的实验研究,据我们所知,目前的理论研究是首次模拟DPB光异构化反应动力学。在总共600条采样轨迹中,有300条通过电子基态和第一激发态之间的两个锥形交叉点积极参与异构化反应。光异构化为顺式,反式 - DPB和顺式,顺式 - DPB的模拟量子产率分别为0.09和0.045,与实验值0.07 - 0.25和0.02分别吻合良好。第一激发态的寿命估计为702飞秒。目前的模拟展示了两种反应性光异构化机制,即一键扭转(OBT)和自行车踏板(BP),以及两种非反应性光异构化机制,即相对于中心主链CC键的单键扭转(SBT)和反向扭转(RT)。我们相信目前的理论工作能够对DPB衍生物的光异构化实验有所助益。