Hader Kilian, May Volkhard, Lambert Christoph, Engel Volker
Universität Würzburg, Institut für Physikalische und Theoretische Chemie, Am Hubland, Campus Nord, Emil-Fischer-Str. 42, 97074 Würzburg, Germany.
Institut für Physik, Humboldt Universität, Newtonstr. 15, D-12489 Berlin, Germany.
Phys Chem Chem Phys. 2016 May 11;18(19):13368-74. doi: 10.1039/c6cp01780k.
Ultrafast time-resolved transient absorption spectroscopy is able to monitor the fate of the excited state population in molecular aggregates or polymers. Due to many competing decay processes, the identification of exciton-exciton annihilation (EEA) is difficult. Here, we use a microscopic model to describe exciton annihilation processes in squaraine-squaraine copolymers. Transient absorption time traces measured at different laser powers exhibit an unusual time-dependence. The analysis points towards dynamics taking place on three time-scales. Immediately after laser-excitation a localization of excitons takes place within the femtosecond time-regime. This is followed by exciton-exciton annihilation which is responsible for a fast decay of the exciton population. At later times, excitations being localized on units which are not directly connected remain so that diffusion dominates the dynamics and leads to a slower decay. We thus provide evidence for EEA tracked by time-resolved spectroscopy which has not been reported that clearly before.
超快时间分辨瞬态吸收光谱能够监测分子聚集体或聚合物中激发态粒子的命运。由于存在许多相互竞争的衰变过程,激子 - 激子湮灭(EEA)的识别很困难。在此,我们使用一个微观模型来描述方酸 - 方酸共聚物中的激子湮灭过程。在不同激光功率下测量的瞬态吸收时间轨迹呈现出不寻常的时间依赖性。分析表明动力学发生在三个时间尺度上。激光激发后立即在飞秒时间范围内发生激子的局域化。随后是激子 - 激子湮灭,这导致激子粒子的快速衰减。在稍后的时间,局域在未直接连接的单元上的激发保持不变,因此扩散主导动力学并导致较慢的衰减。因此,我们提供了时间分辨光谱追踪到的EEA的证据,此前尚未如此清晰地报道过。