Yin Ruilin, Gao Nan, Cao Jing, Li Yanchun, Wang Dequan, Huang Xuri
Institute of Theoretical Chemistry, Jilin University Changchun People's Republic of China
Department of Thoracic Surgery, China-Japan Union Hospital of Jilin University Changchun People's Republic of China.
RSC Adv. 2020 Oct 26;10(64):39226-39240. doi: 10.1039/d0ra05777k. eCollection 2020 Oct 21.
The adiabatic potential energies for the lowest three states of a LiH system are calculated with a high level method (MCSCF/MRCI) with a large basis set (aV5Z). The accurate three dimensional B-spline fitting method is used to map the global adiabatic potential energy surfaces, using the existing adiabatic potential energies, for the lowest two adiabatic states of the title reaction system. The different vibrational states and corresponding energies are studied for the diatomic molecule of reactant and products. In order to clearly understand the nonadiabatic process, the avoided crossing area and conical intersection are carefully studied. For further study of the nonadiabatic dynamic reaction, the diabatic potential energy surfaces are deduced in the present work.
采用高级别方法(MCSCF/MRCI)和大基组(aV5Z)计算了LiH体系最低三个态的绝热势能。利用精确的三维B样条拟合方法,根据标题反应体系最低两个绝热态现有的绝热势能来绘制全局绝热势能面。研究了反应物和产物双原子分子的不同振动态及相应能量。为了清晰理解非绝热过程,仔细研究了避免交叉区域和锥形交叉。为进一步研究非绝热动力学反应,本文推导了 diabatic 势能面。