首页> 外文期刊>Journal of chemical theory and computation: JCTC >Nonadiabatic Ab Initio Molecular Dynamics with the Floating Occupation Molecular Orbital-Complete Active Space Configuration Interaction Method
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Nonadiabatic Ab Initio Molecular Dynamics with the Floating Occupation Molecular Orbital-Complete Active Space Configuration Interaction Method

机译:具有浮动占用分子轨道 - 完全有源空间配置相互作用方法的非等压AB初始分子动力学

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摘要

We show that the floating occupation molecular orbital complete active space configuration interaction (FOMO-CASCI) method is a promising alternative to the widely used complete active space self-consistent field (CASSCF) method in direct nonadiabatic dynamics simulations. We have simulated photodynamics of three archetypal molecules in photodynamics: ethylene, methaniminium cation, and malonaldehyde. We compared the time evolution of electronic populations and reaction mechanisms as revealed by the FOMO-CASCI and CASSCF approaches. Generally, the two approaches provide similar results. Some dynamical differences are observed, but these can be traced back to energetically minor differences in the potential energy surfaces. We suggest that the FOMO-CASCI method represents, due to its efficiency and stability, a promising approach for direct ab initio dynamics in the excited state.
机译:我们表明,浮动占用分子轨道完全有源空间配置相互作用(FOMO-CASCI)方法是广泛使用的完全有效空间自我一致性领域(CASSCF)方法在直接的非抗动动力学模拟中的有希望的替代方案。 我们在光动力学中的三种原型分子模拟了光学动力学:乙烯,甲基铵阳离子和苯甲醛。 我们比较了FOMO-CASCI和CASSCF方法所揭示的电子群体和反应机制的时间演变。 通常,这两种方法提供了类似的结果。 观察到一些动态差异,但这些可以追溯到潜在能量表面的能量微小的差异。 我们建议Fomo-Casci方法由于其效率和稳定性而代表了激发态中直接AB Initio Dynamics的有希望的方法。

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