Li Hong, Brédas Jean-Luc, Lennartz Christian
School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332-0400, USA.
J Chem Phys. 2007 Apr 28;126(16):164704. doi: 10.1063/1.2727480.
The electronic couplings between adjacent molecules in the phenanthroline-based bathocuproine (BCP) and bathophenanthroline (Bphen) crystals have been studied using density functional theory on model dimers. Within the frame of the "two-state model" of charge-transfer theory, a generalized definition of the "effective transfer integral" is proposed. This definition addresses the issue arising when the lowest unoccupied molecular orbital (LUMO) [highest occupied molecular orbital (HOMO)] and LUMO+1 (HOMO-1) of the single molecules both have significant contributions to the dimer LUMO (HOMO) level. Charge-transfer integrals based on the new definition are compared with those from previous models; significant differences are found. The authors' results indicate that, within a simple Marcus theory approach, the charge-transport parameters of the BCP and Bphen crystals are expected to be similar.
利用密度泛函理论对模型二聚体研究了基于菲咯啉的浴铜灵(BCP)和浴菲咯啉(Bphen)晶体中相邻分子间的电子耦合。在电荷转移理论的“双态模型”框架内,提出了“有效转移积分”的广义定义。该定义解决了单分子的最低未占分子轨道(LUMO)[最高占分子轨道(HOMO)]和LUMO + 1(HOMO - 1)对二聚体LUMO(HOMO)能级均有显著贡献时出现的问题。将基于新定义的电荷转移积分与先前模型的积分进行了比较;发现了显著差异。作者的结果表明,在简单的马库斯理论方法中,预计BCP和Bphen晶体的电荷传输参数相似。