激发态
化学
Atom(片上系统)
量子化学
量子
化学物理
环丁烷
分拆(数论)
微扰理论(量子力学)
势能面
自由能微扰
计算化学
原子物理学
物理
分子动力学
量子力学
分子
计算机科学
嵌入式系统
组合数学
有机化学
数学
戒指(化学)
作者
Jesús Jara‐Cortés,Edith Leal-Sánchez,E. Francisco,José A. Pérez‐Pimienta,Ángel Martín Pendás,Jesús Hernández‐Trujillo
摘要
We present an implementation of the interacting quantum atom (IQA) energy decomposition scheme using the complete active space second-order perturbation theory (CASPT2). This combination yields a real-space interpretation tool with a proper account of the static and dynamic correlation that is particularly relevant for the description of processes in electronic excited states. The IQA/CASPT2 approach allows determination of the energy redistribution that takes place along a photophysical/photochemical deactivation path in terms of self- and interatomic contributions. The applicability of the method is illustrated by the description of representative processes spanning different bonding regimes: noble gas excimer and exciplex formation, the reaction of ozone with a chlorine atom, and the photodissociations of formaldehyde and cyclobutane. These examples show the versatility of using CASPT2 with the significant information provided by the IQA partition to describe chemical processes with a large multiconfigurational character.
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