材料科学
色素敏化染料
纤维
化学工程
复合材料
物理化学
化学
电极
工程类
电解质
作者
Xinyue Kang,Jiatian Song,Jiuzhou Liu,Siwei Cao,Zhengmeng Lin,Hongyu Jiang,Yiqing Yang,Xiangran Cheng,Yulu Ai,Xuemei Sun,Kaiwen Zeng,Zhengfeng Zhu,Huisheng Peng
标识
DOI:10.1002/adfm.202404361
摘要
Abstract Fiber gel dye‐sensitized solar cells (FGDSCs) are recognized as an effective solution for high‐performance, durable and safe wearable power supply. However, poor and unstable interfaces between fiber electrodes and gel electrolytes are bottleneck problems that have restricted the photovoltaic performances of FGDSCs and their stabilities during deformations. Here, an FGDSC with stable interlaced interfaces is designed by incorporating polymerized gel electrolyte into the aligned channels in fiber electrodes and the gaps between photoanode and counter electrode in situ. The interlaced structure of gel electrolyte in FGDSC improves the interfacial stability and provided stable channels for rapid ion diffusions, offering efficient charge transports at interfaces. The resulting FGDSC thus produced a high power conversion efficiency of 7.95%, and it is further maintained by over 90% after bending for 5000 cycles. These FGDSCs can be integrated with fiber batteries as a self‐charging power system, demonstrating an effective power solution for wearables.
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