Yang Chou-Hsun, Yam ChiYung, Wang Haobin
Beijing Computational Science Research Center, Haidian District, Beijing 100193, China.
Phys Chem Chem Phys. 2018 Jan 24;20(4):2571-2584. doi: 10.1039/c7cp06660k.
Four types of density functional theory (DFT)-based approaches are assessed in this work for the approximate construction of diabatic states and the evaluation of electronic couplings between these states. These approaches include the constrained DFT (CDFT) method, the constrained noninteracting electron (CNE) model to post-process Kohn-Sham operators, the approximate block-diagonalization (BD) of the Kohn-Sham operators, and the generalized Mulliken-Hush method. It is shown that the first three approaches provide a good description for long-distance intermolecular electron transfer (ET) reactions. On the other hand, inconsistent results were found when applying these approaches to intramolecular ET in strongly coupled, mixed-valence systems. Model analysis shows that this discrepancy is caused by the inappropriate use of the two-state model rather than the defects of the approaches themselves. The situation is much improved when more states are included in the model electronic Hamiltonian. The CNE and BD approaches can thus serve as efficient and robust alternatives for building ET models based on DFT calculations.
本文评估了四种基于密度泛函理论(DFT)的方法,用于近似构建非绝热态以及评估这些态之间的电子耦合。这些方法包括约束密度泛函理论(CDFT)方法、用于后处理Kohn-Sham算符的约束非相互作用电子(CNE)模型、Kohn-Sham算符的近似块对角化(BD)以及广义Mulliken-Hush方法。结果表明,前三种方法对长距离分子间电子转移(ET)反应能给出很好的描述。另一方面,将这些方法应用于强耦合混合价体系中的分子内ET时,得到了不一致的结果。模型分析表明,这种差异是由于两态模型使用不当,而非方法本身的缺陷。当模型电子哈密顿量中包含更多态时,情况有了很大改善。因此,CNE和BD方法可作为基于DFT计算构建ET模型的高效且稳健的替代方法。