Pagano Katia, Kim Jin Gwan, Luke Joel, Tan Ellasia, Stewart Katherine, Sazanovich Igor V, Karras Gabriel, Gonev Hristo Ivov, Marsh Adam V, Kim Na Yeong, Kwon Sooncheol, Kim Young Yong, Alonso M Isabel, Dörling Bernhard, Campoy-Quiles Mariano, Parker Anthony W, Clarke Tracey M, Kim Yun-Hi, Kim Ji-Seon
Department of Physics and Centre for Processable Electronics, Imperial College London, London, SW7 2AZ, UK.
Department of Chemistry and Research Institute of Molecular Alchemy (RIMA) Gyeongsang National University Jinju, Gyeongnam, 660-701, Republic of Korea.
Nat Commun. 2024 Jul 22;15(1):6153. doi: 10.1038/s41467-024-50530-7.
Glycol sidechains are often used to enhance the performance of organic photoconversion and electrochemical devices. Herein, we study their effects on electronic states and electronic properties. We find that polymer glycolation not only induces more disordered packing, but also results in a higher reorganisation energy due to more localised π-electron density. Transient absorption spectroscopy and femtosecond stimulated Raman spectroscopy are utilised to monitor the structural relaxation dynamics coupled to the excited state formation upon photoexcitation. Singlet excitons are initially formed, followed by polaron pair formation. The associated structural relaxation slows down in glycolated polymers (5 ps vs. 1.25 ps for alkylated), consistent with larger reorganisation energy. This slower vibrational relaxation is found to drive ultrafast formation of the polaron pair state (5 ps vs. 10 ps for alkylated). These results provide key experimental evidence demonstrating the impact of molecular structure on electronic state formation driven by strong vibrational coupling.
二醇侧链常用于提高有机光转换和电化学器件的性能。在此,我们研究了它们对电子态和电子性质的影响。我们发现,聚合物二醇化不仅会导致堆积更加无序,还会由于π电子密度更加局域化而导致更高的重组能。利用瞬态吸收光谱和飞秒受激拉曼光谱来监测与光激发后激发态形成相关的结构弛豫动力学。单重态激子最初形成,随后形成极化子对。在二醇化聚合物中,相关的结构弛豫会减慢(5皮秒,而烷基化聚合物为1.25皮秒),这与更大的重组能一致。发现这种较慢的振动弛豫会驱动极化子对态的超快形成(5皮秒,而烷基化聚合物为10皮秒)。这些结果提供了关键的实验证据,证明了分子结构对由强振动耦合驱动的电子态形成的影响。