Dipartimento di Chimica G. Ciamician, Università di Bologna, Via F. Selmi, 2, 40126 Bologna, Italy.
J Phys Chem B. 2010 Apr 29;114(16):5327-34. doi: 10.1021/jp101040r.
The intramolecular and intermolecular charge transport parameters are evaluated quantum chemically for three fluorinated derivatives of perylene bisimide (PBI) semiconductors, two of which feature a twisted PBI core. Charge transfer rates are computed within the Marcus-Levich-Jortner formalism including a single effective mode treated quantum mechanically and are injected in a kinetic Monte Carlo scheme to propagate the charge carrier in the crystal and to estimate charge mobilities at room temperature. The relative order of computed mobilities agrees with the observed trend, and the largest mobility is computed for the planar PBI derivative. It is suggested that thermally induced disorder effects should contribute considerably to the observed large mobility of the planar PBI derivative, while a retardation effect induced by the presence of alternating slow and fast jumps along pi-stacked PBI columns is responsible for the lower mobilities of the two twisted derivatives. The computed parameters reveal the subtle interplay between intramolecular and intermolecular contributions to the charge carrier propagation in these organic semiconductors and may guide the design of more efficient architectures.
三种氟化的并苯二酰亚胺(PBI)半导体的分子内和分子间电荷输运参数通过量子化学进行了评估,其中两个具有扭曲的 PBI 核心。在 Marcus-Levich-Jortner 形式主义中计算了电荷转移速率,其中包括一个以量子力学方式处理的单一有效模式,并将其注入动力学蒙特卡罗方案中,以在晶体中传播电荷载流子并估计室温下的电荷迁移率。计算的迁移率的相对顺序与观察到的趋势一致,并且平面 PBI 衍生物的迁移率最大。有人认为,热诱导的无序效应应该对观察到的平面 PBI 衍生物的大迁移率有很大贡献,而沿 π 堆积的 PBI 柱交替存在的缓慢和快速跳跃引起的延迟效应则导致了两个扭曲衍生物的迁移率较低。计算出的参数揭示了这些有机半导体中电荷载流子输运的分子内和分子间贡献之间的微妙相互作用,并可能指导更有效的架构设计。