材料科学
聚酰亚胺
能量转换效率
有机太阳能电池
基质(水族馆)
化学工程
紫外线
光电子学
弯曲
热稳定性
辐照
纳米技术
复合材料
聚合物
图层(电子)
海洋学
物理
地质学
核物理学
工程类
作者
Yongmei Wang,Qiaomei Chen,Yupu Wang,Guangcong Zhang,Zhou Zhang,Jie Fang,Chaowei Zhao,Weiwei Li
标识
DOI:10.1002/marc.202200432
摘要
Ultrathin organic solar cells (OSCs) with both high power conversion efficiency (PCE) and operational stability are of great significance for the industrial applications but still challenging. Here, a polyimide (PI) substrate for high-performance and stable ultrathin OSCs, which is physically crosslinked via strong hydrogen bonds (denoted as HB-PI) to enhance the mechanical, thermal, solvent-resistant, and UV filtering properties (with a cut-off wavelength of 376 nm), is synthesized. An ultrathin flexible transparent composite electrode (FTCE, ≈7 µm) is fabricated via semi-embedding AgNWs in the HB-PI substrate. The FTCE possesses excellent optoelectronic property, smooth surface, and high mechanical stability simultaneously. Based on this FTCE, an ultrathin OSC is constructed with a PCE of 13.52% (average of 13.22%). Moreover, the ultrathin OSC shows outstanding mechanical stability (PCE decreased by less than 4% after 1000 bending cycles at a small bending radius of 0.5 mm) and superior UV light stability (no evident PCE degradation after irradiation under UV light for 10 h). This work will provide a new avenue for fabricating high-performance and stable ultrathin OSCs.
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