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聚乙二醇(Oligo(ethylene glycol))掺入 Y 系列受体的分子结构对形成类合金受体和非卤化溶剂处理有机太阳能电池性能的影响。

Impact of the Molecular Structure of Oligo(ethylene glycol)-Incorporated Y-Series Acceptors on the Formation of Alloy-like Acceptors and Performance of Non-Halogenated Solvent-Processable Organic Solar Cells.

机构信息

Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.

Department of Chemistry and RIGET, Gyeongsang National University, Jinju 52828, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2023 May 24;15(20):24670-24680. doi: 10.1021/acsami.3c03860. Epub 2023 May 9.

Abstract

To realize efficient, green solvent-processable organic solar cells (OSCs), considerable effort has been expended on the development of conjugated materials with both superior optoelectrical properties and processability. However, molecular design strategies that enhance solubility often reduce crystalline/electrical properties of the materials. In this study, we develop three new guest small-molecule acceptors (SMAs) (Y-4C-4O, Y-6C-4O, and Y-12C-4O) featuring inner side chains consisting of terminal oligo(ethylene glycol) (OEG) groups and alkyl spacers of different lengths. When a host SMA (Y6) and guest SMA (Y-C-4O) are mixed, favorable interactions between these materials lead to the formation of "alloy-like" composites. The alloy-like SMA composites enable sufficient processing in -xylene to afford suitable blend-film morphologies. It is also found that the lengths of the alkyl spacers in guest SMAs have a significant impact on the performance of the -xylene-processed OSCs. The PM6:Y6:Y-4C-4O blend achieves a maximum power conversion efficiency (PCE) of 17.03%, outperforming PM6:Y6:Y-6C-4O (PCE = 15.85%) and PM6:Y6:Y-12C-4O (PCE = 12.12%) OSCs. The high PCE of the PM6:Y6:Y-4C-4O device is mainly attributed to the well-intermixed morphology and superior crystalline/electrical properties, which result from the high compatibility of the Y6:Y-4C-4O composites with PM6. Thus, we demonstrate that an alloy-like SMA composite based on well-designed OEG-incorporated Y-series SMAs can afford green solvent-processable, high-performance OSCs.

摘要

为了实现高效、绿色的溶剂型有机太阳能电池(OSC),研究人员在开发具有优异光电性能和加工性能的共轭材料方面付出了相当大的努力。然而,提高溶解性的分子设计策略往往会降低材料的结晶/电学性能。在这项研究中,我们开发了三种具有内侧链的新型客体小分子受体(SMA)(Y-4C-4O、Y-6C-4O 和 Y-12C-4O),其侧链由末端聚(乙二醇)(OEG)基团和不同长度的烷基间隔基组成。当主体 SMA(Y6)和客体 SMA(Y-C-4O)混合时,这些材料之间的有利相互作用导致形成“合金状”复合材料。这些合金状 SMA 复合材料使得在 -二甲苯中进行充分的加工成为可能,从而形成合适的共混膜形态。还发现,客体 SMA 中的烷基间隔基的长度对 -二甲苯处理的 OSC 的性能有显著影响。PM6:Y6:Y-4C-4O 共混物实现了 17.03%的最大功率转换效率(PCE),优于 PM6:Y6:Y-6C-4O(PCE = 15.85%)和 PM6:Y6:Y-12C-4O(PCE = 12.12%)OSC。PM6:Y6:Y-4C-4O 器件的高 PCE 主要归因于良好混合的形态和优异的结晶/电学性能,这是由于 Y6:Y-4C-4O 复合材料与 PM6 的高相容性所致。因此,我们证明了基于精心设计的含 OEG 的 Y 系列 SMA 的合金状 SMA 复合材料可以提供绿色溶剂型、高性能的 OSC。

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