Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, 266101, China.
Laboratory of Solar Energy, Shandong Energy Institute, Qingdao, 266101, China.
Adv Mater. 2023 Mar;35(10):e2208986. doi: 10.1002/adma.202208986. Epub 2023 Jan 13.
Research on organic solar cells (OSCs) has progressed through material innovation and device engineering. However, well-known and ubiquitous intermolecular interactions, and particularly their synergistic effects, have received little attention. Herein, the complicated relationship between photovoltaic conversion and multidimensional intermolecular interactions in the active layers is investigated. These interactions are dually regulated by side-chain isomerization and end-cap engineering of the acceptors. The phenylalkyl featured acceptors (LA-series) exhibit stronger crystallinity with preferential face-on interactions relative to the alkylphenyl attached isomers (ITIC-series). In addition, the PM6 and LA-series acceptors exhibit moderate donor/acceptor interactions compared to those of the strongly interacting PM6/ITIC-series pairs, which helps to enhance phase separation and charge transport. Consequently, the output efficiencies of all LA series acceptors are over 14%. Moreover, LA-series acceptors show appropriate compatibility, host/guest interactions, and crystallinity relationships with BTP-eC9, thereby leading to uniform and well-organized "alloy-like" mixed phases. In particular, the highly crystalline LA23 further optimizes multiple interactions and ternary microstructures, which results in a high efficiency of 19.12%. Thus, these results highlight the importance of multidimensional intermolecular interactions in the photovoltaic performance of OSCs.
有机太阳能电池(OSCs)的研究已经通过材料创新和器件工程取得了进展。然而,众所周知的普遍存在的分子间相互作用,特别是它们的协同效应,却很少受到关注。在此,研究了活性层中光伏转换与多维分子间相互作用之间的复杂关系。这些相互作用通过受体的侧链异构化和端基工程进行双重调节。具有苯烷基特征的受体(LA 系列)表现出更强的结晶性,相对于附着的烷基苯异构体(ITIC 系列)具有优先的面外相互作用。此外,与强相互作用的 PM6/ITIC 系列对相比,PM6 和 LA 系列受体表现出适度的供体/受体相互作用,这有助于增强相分离和电荷传输。因此,所有 LA 系列受体的输出效率都超过 14%。此外,LA 系列受体与 BTP-eC9 具有适当的兼容性、主体/客体相互作用和结晶性关系,从而形成均匀且组织良好的“类似合金”混合相。特别是高度结晶的 LA23 进一步优化了多种相互作用和三元微结构,从而实现了 19.12%的高效率。因此,这些结果强调了多维分子间相互作用对 OSCs 光伏性能的重要性。