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用于热稳定、机械坚固且高性能有机太阳能电池的供体-受体交替共聚物增容剂

Donor-Acceptor Alternating Copolymer Compatibilizers for Thermally Stable, Mechanically Robust, and High-Performance Organic Solar Cells.

作者信息

Lee Jin-Woo, Sun Cheng, Kim Dong Jun, Ha Min Young, Han Daehee, Park Jin Su, Wang Cheng, Lee Won Bo, Kwon Soon-Ki, Kim Taek-Soo, Kim Yun-Hi, Kim Bumjoon J

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, South Korea.

出版信息

ACS Nano. 2021 Dec 28;15(12):19970-19980. doi: 10.1021/acsnano.1c07471. Epub 2021 Nov 19.

Abstract

Small-molecule acceptor (SMA)-based organic solar cells (OSCs) have achieved high power conversion efficiencies (PCEs), while their long-term stabilities remain to be improved to meet the requirements for real applications. Herein, we demonstrate the use of donor-acceptor alternating copolymer-type compatibilizers (DACCs) in high-performance SMA-based OSCs, enhancing their PCE, thermal stability, and mechanical robustness simultaneously. Detailed experimental and computational studies reveal that the addition of DACCs to polymer donor ()-SMA blends effectively reduces -SMA interfacial tensions and stabilizes the interfaces, preventing the coalescence of the phase-separated domains. As a result, desired morphologies with exceptional thermal stability and mechanical robustness are obtained for the -SMA blends. The addition of 20 wt % DACCs affords OSCs with a PCE of 17.1% and a cohesive fracture energy () of 0.89 J m, higher than those (PCE = 13.6% and = 0.35 J m) for the control OSCs without DACCs. Moreover, at an elevated temperature of 120 °C, the OSCs with 20 wt % DACC exhibit excellent morphological stability, retaining over 95% of the initial PCE after 300 h. In contrast, the control OSCs without the DACC rapidly degraded to below 60% of the initial PCE after 144 h.

摘要

基于小分子受体(SMA)的有机太阳能电池(OSC)已实现了高功率转换效率(PCE),但其长期稳定性仍有待提高以满足实际应用的要求。在此,我们展示了在高性能基于SMA的OSC中使用供体-受体交替共聚物型增容剂(DACC),同时提高其PCE、热稳定性和机械强度。详细的实验和计算研究表明,向聚合物供体()-SMA共混物中添加DACC可有效降低-SMA界面张力并稳定界面,防止相分离域的聚结。结果,-SMA共混物获得了具有出色热稳定性和机械强度的理想形态。添加20 wt%的DACC可使OSC的PCE达到17.1%,内聚断裂能()为0.89 J m,高于不含DACC的对照OSC(PCE = 13.6%, = 0.35 J m)。此外,在120°C的高温下,含有20 wt%DACC的OSC表现出出色的形态稳定性,在300小时后仍保留超过95%的初始PCE。相比之下,不含DACC的对照OSC在144小时后迅速降解至初始PCE的60%以下。

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