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通过三聚体诱导的预膨胀策略对逐层处理的活性层进行合理调控,以制备高效且稳定的厚膜有机太阳能电池。

Rational Regulation of Layer-by-Layer Processed Active Layer via Trimer-Induced Pre-Swelling Strategy for Efficient and Robust Thick-Film Organic Solar Cells.

作者信息

Gao Shenzheng, Xu Shanlei, Sun Cheng, Yu Liyang, Li Jing, Li Ruipeng, Liu Xingting, Zhou Xinjie, Chen Huilong, Lin Yijin, Bao Xichang, Zhu Weiguo, Song Xin

机构信息

School of Materials Science and Engineering, Jiangsu Engineering Research Center of Light-Electricity-Heat Energy-Converting Materials and Applications, Jiangsu Collaborative Innovation Center of Photovoltaic Science and Engineering, Changzhou University, Changzhou, 213164, P.R. China.

Key Laboratory of Photoelectric Conversion and Utilization of Solar Energy, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, 266101, P. R. China.

出版信息

Adv Mater. 2025 Jul;37(28):e2420631. doi: 10.1002/adma.202420631. Epub 2025 May 8.

Abstract

Thick-film (>300 nm) organic solar cells (OSCs) have garnered intensifying attention due to their compatibility with commercial roll-to-roll printing technology for the large-scale continuous fabrication process. However, due to the uncontrollable donor/acceptor (D/A) arrangement in thick-film condition, the restricted exciton splitting and severe carrier traps significantly impede the photovoltaic performance and operability. Herein, combined with layer-by-layer deposition technology, a twisted 3D star-shaped trimer (BTT-Out) is synthesized to develop a trimer-induced pre-swelling (TIP) strategy, where the BTT-Out is incorporated into the buried D18 donor layer to enable the fabrication of thick-film OSCs. The integrated approach characterizations reveal that the exceptional configuration and spontaneous self-organization behavior of BTT-Out trimer could pre-swell the D18 network to facilitate the acceptor's infiltration and accelerate the formation of D/A interfaces. This enhancement triggers the elevated polarons formation with amplified hole-transfer kinetics, which is essential for the augmented exciton splitting efficiency. Furthermore, the regulated swelling process can initiate the favorable self-assembly of L8-BO acceptors, which would ameliorate carrier transport channels and mitigate carrier traps. As a result, the TIP-modified thin-film OSC devices achieve the champion performance of 20.3% (thin-film) and 18.8% (thick-film) with upgraded stability, among one of the highest performances reported of thick-film OSCs.

摘要

厚膜(>300 nm)有机太阳能电池(OSCs)因其与用于大规模连续制造工艺的商业卷对卷印刷技术的兼容性而受到越来越多的关注。然而,由于在厚膜条件下施主/受主(D/A)排列不可控,受限的激子分裂和严重的载流子陷阱显著阻碍了光伏性能和可操作性。在此,结合逐层沉积技术,合成了一种扭曲的三维星形三聚体(BTT-Out),以开发三聚体诱导预膨胀(TIP)策略,其中BTT-Out被并入埋入的D18施主层中,以实现厚膜OSCs的制备。综合方法表征表明,BTT-Out三聚体特殊的结构和自发的自组装行为可以使D18网络预膨胀,以促进受主的渗透并加速D/A界面的形成。这种增强引发了极化子形成的增加和空穴转移动力学的放大,这对于提高激子分裂效率至关重要。此外,调控的膨胀过程可以引发L8-BO受主的有利自组装,这将改善载流子传输通道并减轻载流子陷阱。结果,TIP修饰的薄膜OSC器件实现了20.3%(薄膜)和18.8%(厚膜)的最佳性能,且稳定性得到提升,是厚膜OSCs报道的最高性能之一。

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