Hong Yongseok, Rudolf Maximilian, Kim Munnyon, Kim Juno, Schembri Tim, Krause Ana-Maria, Shoyama Kazutaka, Bialas David, Röhr Merle I S, Joo Taiha, Kim Hyungjun, Kim Dongho, Würthner Frank
Spectroscopy Laboratory for Functional π-Electronic Systems and Department of Chemistry, Yonsei University, Seoul, 03722, Republic of Korea.
Universitat Würzburg, Institut für Organische Chemie, Am Hubland, 97074, Würzburg, Germany.
Nat Commun. 2022 Aug 2;13(1):4488. doi: 10.1038/s41467-022-31958-1.
Dye arrays from dimers up to larger oligomers constitute the functional units of natural light harvesting systems as well as organic photonic and photovoltaic materials. Whilst in the past decades many photophysical studies were devoted to molecular dimers for deriving structure-property relationship to unravel the design principles for ideal optoelectronic materials, they fail to accomplish the subsequent processes of charge carrier generation or the detachment of two triplet species in singlet fission (SF). Here, we present a slip-stacked perylene bisimide trimer, which constitutes a bridge between hitherto studied dimer and solid-state materials, to investigate SF mechanisms. This work showcases multiple pathways towards the multiexciton state through direct or excimer-mediated mechanisms by depending upon interchromophoric interaction. These results suggest the comprehensive role of the exciton coupling, exciton delocalization, and excimer state to facilitate the SF process. In this regard, our observations expand the fundamental understanding the structure-property relationship in dye arrays.
从二聚体到更大的低聚物的染料阵列构成了自然光捕获系统以及有机光子和光伏材料的功能单元。在过去几十年中,许多光物理研究致力于分子二聚体,以推导结构-性质关系,从而揭示理想光电子材料的设计原则,但它们未能完成随后的电荷载流子产生过程或单重态裂变(SF)中两个三重态物种的分离。在此,我们展示了一种滑移堆积的苝二酰亚胺三聚体,它构成了迄今研究的二聚体与固态材料之间的桥梁,用于研究SF机制。这项工作展示了通过直接或激基缔合物介导的机制,依赖发色团间相互作用通向多激子态的多种途径。这些结果表明激子耦合、激子离域和激基缔合物态在促进SF过程中的综合作用。在这方面,我们的观察扩展了对染料阵列中结构-性质关系的基本理解。