Department of Chemistry and Biochemistry, North Dakota State University, Fargo, North Dakota 58108, United States.
J Phys Chem A. 2012 Dec 27;116(51):12503-9. doi: 10.1021/jp309950f. Epub 2012 Dec 14.
A series of thiophene coupled acceptors were systematically investigated at the density functional theory level to reveal structure-property relationships for building blocks of materials used in organic photovoltaic applications. All of the acceptor groups studied in this work retain their aromaticity when coupled to thiophene groups as estimated from their aromatic stabilization energies. However, pure chains of acceptors may adopt quinoidal geometry along the conjugated backbone depending on the structure of interest. Spearman rank order correlation has been used to assess the relationships between the computed variables such as highest occupied molecular orbital, lowest unoccupied molecular orbital, E(g), oscillator strength, exciton binding energy, aromatic stabilization energy, etc. The relative acceptor strengths were plotted and electrostatic potential maps were generated to examine the charge distribution over the chromophores. It has been found that there is no correlation between acceptor strength and electron withdrawing ability of the acceptor. Electron rich and highly electronegative atoms within acceptor groups mainly affect the charge distribution over the acceptor geometry. Exciton binding energy increases with the increasing aromatic character of the acceptor group. The acceptor strength is inversely correlated with the oscillator strength for the lowest excited state transition.
一系列噻吩耦合受体在密度泛函理论水平上进行了系统研究,以揭示用于有机光伏应用的材料构建块的结构-性质关系。本工作中研究的所有受体基团在与噻吩基团耦合时都保留了其芳香性,这可以从它们的芳香稳定能来估计。然而,纯受体链可能会根据所关注的结构在共轭主链上采用醌式几何形状。Spearman 秩相关系数用于评估计算变量(如最高占据分子轨道、最低未占据分子轨道、Eg、振子强度、激子结合能、芳香稳定能等)之间的关系。相对受体强度进行了绘制,并生成了静电势图以检查发色团上的电荷分布。结果发现,受体强度与受体的电子受能力之间没有相关性。受体基团内的富电子和高电负性原子主要影响受体几何形状上的电荷分布。激子结合能随受体基团芳香性的增加而增加。对于最低激发态跃迁,受体强度与振子强度呈反比关系。