Fujimoto Kazuhiro J
Department of Computational Science, Graduate School of System Informatics, Kobe University, 1-1, Rokkodai, Nada, Kobe 657-8501, Japan.
J Chem Phys. 2014 Dec 7;141(21):214105. doi: 10.1063/1.4902758.
A transition charge, dipole, and quadrupole from electrostatic potential (TrESP-CDQ) method for electronic coupling calculations is proposed. The TrESP method is based on the classical description of electronic Coulomb interaction between transition densities for individual molecules. In the original TrESP method, only the transition charge interactions were considered as the electronic coupling. In the present study, the TrESP method is extended to include the contributions from the transition dipoles and quadrupoles as well as the transition charges. Hence, the self-consistent transition density is employed in the ESP fitting procedure. To check the accuracy of the present approach, several test calculations are performed to a helium dimer, a methane dimer, and an ethylene dimer. As a result, the TrESP-CDQ method gives a much improved description of the electronic coupling, compared with the original TrESP method. The calculated results also show that the self-consistent treatment to the transition densities contributes significantly to the accuracy of the electronic coupling calculations. Based on the successful description of the electronic coupling, the contributions to the electronic coupling are also analyzed. This analysis clearly shows a negligible contribution of the transition charge interaction to the electronic coupling. Hence, the distribution of the transition density is found to strongly influence the magnitudes of the transition charges, dipoles, and quadrupoles. The present approach is useful for analyzing and understanding the mechanism of excitation-energy transfer.
提出了一种用于电子耦合计算的基于静电势的跃迁电荷、偶极子和四极子方法(TrESP-CDQ)。TrESP方法基于对单个分子跃迁密度之间电子库仑相互作用的经典描述。在原始的TrESP方法中,仅将跃迁电荷相互作用视为电子耦合。在本研究中,TrESP方法得到扩展,以纳入跃迁偶极子、四极子以及跃迁电荷的贡献。因此,在静电势拟合过程中采用了自洽跃迁密度。为检验本方法的准确性,对氦二聚体、甲烷二聚体和乙烯二聚体进行了若干测试计算。结果表明,与原始的TrESP方法相比,TrESP-CDQ方法对电子耦合的描述有了很大改进。计算结果还表明,对跃迁密度的自洽处理对电子耦合计算的准确性有显著贡献。基于对电子耦合的成功描述,还对电子耦合的贡献进行了分析。该分析清楚地表明跃迁电荷相互作用对电子耦合的贡献可忽略不计。因此,发现跃迁密度的分布强烈影响跃迁电荷、偶极子和四极子的大小。本方法有助于分析和理解激发能量转移的机制。