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Multiscale Models for Light-Driven Processes
DOI:10.1146/annurev-physchem-090419-104031.png)
摘要
En 中文
Multiscale models combining quantum mechanical and classical descriptions are a very popular strategy to simulate properties and processes of complex systems. Many alternative formulations have been developed, and they are now available in all of the most widely used quantum chemistry packages. Their application to the study of light-driven processes, however, is more recent, and some methodological and numerical problems have yet to be solved. This is especially the case for the polarizable formulation of these models, the recent advances in which we review here. Specifically, we identify and describe the most important specificities that the polarizable formulation introduces into both the simulation of excited-state dynamics and the modeling of excitation energy and electron transfer processes.
Keyword:
polarizable embedding
QM/MM
continuum models
nonadiabatic dynamics
excitation energy transfer
electron transfer
期刊
IF:
11.7
论文数:
1.5K
被引数:
8.9K
机构
引用论文
Polarizable QM/MM Multiconfiguration Self-Consistent Field Approach with State-Specific Corrections: Environment Effects on Cytosine Absorption Spectrum具有状态特定校正的可极化QM/MM多配置自洽场方法: 环境对胞嘧啶吸收光谱的影响

