非绝热的
代表(政治)
非线性系统
统计物理学
可转让性
意义(存在)
化学
氢原子
计算
价键理论
Atom(片上系统)
形式主义(音乐)
计算机科学
氢键
物理
氢
量子力学
理论物理学
化学物理
圆锥交点
基础(线性代数)
计算化学
作者
Yang Zhang,Guoxia Gou,Jiao Li,Dongping Chen,Peifeng Su,Wei Wu
标识
DOI:10.1021/acs.jpca.5c07207
摘要
The construction of diabatic representations is important for understanding nonadiabatic processes. Significant efforts have been devoted to developing robust and generalizable methodologies for diabatization, aiming to improve numerical accuracy, computational efficiency, and transferability across diverse systems. However, while substantial progress has been made on the methodological front, the fundamental chemical significance inherent to the diabatic representation itself has received less attention. In this study, we move beyond these technical performance metrics to decode the chemical meaning of diabatic representations in a series of nonlinear (bent) hydrogen atom transfer (HAT) systems. Using classical valence bond (VB) theory, we explicitly analyze the bonding nature (e.g., covalent, ionic) embodied by diabatic representation in model HAT systems (H3, H2F, NaH2, NaHF, BeH2+), revealing the specific electronic reorganization captured during the reaction. This mechanistic insight extends the traditional diabatic state representation and underscores the role of dynamic bonding pattern mixing.
科研通智能强力驱动
Strongly Powered by AbleSci AI