[目的]利用本课题组发展的定量分析方法研究激发态DNA碱基对分子间相互作用的本质,以及不同类型的电子跃迁对DNA碱基对分子间相互作用的影响.[方法]采用广义Kohn-Sham能量分解分析方法(generalized Kohn-Sham based energy decomposition analysis,GKS-EDA),对两种Waston-Crick构型和两种stacked构型的DNA碱基对分子间相互作用本质进行理论研究.[结果]对于Waston-Crick构型的碱基对,n→π^(*)跃迁削弱了轨道极化作用但加强了电子相关作用,激发态分子间相互作用由电子相关作用主导,而π→π^(*)跃迁对分子间氢键影响较小;对于stacked构型的碱基对,π→π^(*)跃迁削弱了静电相互作用但增强了电子相关作用.[结论]Waston-Crick构型碱基对分子间相互作用本质受电子激发跃迁影响较大,而电子激发跃迁基本不改变stacked构型碱基对分子间相互作用本质.
Configuration interaction tenichque is applied to the valence bond theory. Virtual VB orbitals are built, which are localized and orthogonal to their corresponding occupied orbitals and the excited VB structures are defined, which come from their corresponding fundamental VB structures. The testing calculations of H 2, LiH, HF show that the VB results using CI method match those of the molecular orbital based on the coupled cluster CCSD method, and the CI technique may become a useful tool in VB method.