UCL Department of Physics and Astronomy, University College London, London, United Kingdom.
J Chem Phys. 2011 Jun 28;134(24):244102. doi: 10.1063/1.3600404.
Conjugated polymers have attracted considerable attention in the last few decades due to their potential for optoelectronic applications. A key step that needs optimisation is charge carrier separation following photoexcitation. To understand better the dynamics of the exciton prior to charge separation, we have performed simulations of the formation and dynamics of localised excitations in single conjugated polymer strands. We use a nonadiabatic molecular dynamics method which allows for the coupled evolution of the nuclear degrees of freedom and of multiconfigurational electronic wavefunctions. We show the relaxation of electron-hole pairs to form excitons and oppositely charged polaron pairs and discuss the modifications to the relaxation process predicted by the inclusion of the Coulomb interaction between the carriers. The issue of charge photogeneration in conjugated polymers in dilute solution is also addressed.
共轭聚合物由于其在光电应用方面的潜力,在过去几十年中引起了相当大的关注。需要优化的一个关键步骤是光激发后载流子的分离。为了更好地理解激子在电荷分离之前的动力学,我们对单个共轭聚合物链中局域激发的形成和动力学进行了模拟。我们使用非绝热分子动力学方法,允许核自由度和多组态电子波函数的耦合演化。我们展示了电子-空穴对弛豫形成激子和带相反电荷的极化子对,并讨论了包括载流子之间的库仑相互作用对弛豫过程的预测的修改。还讨论了在稀溶液中共轭聚合物的电荷光生成问题。