An Efficient Fiber Gel Dye‐Sensitized Solar Cell with Stable Interlaced Interfaces

Author:

Kang Xinyue1,Song Jiatian1,Liu Jiuzhou1,Cao Siwei1,Lin Zhengmeng1,Jiang Hongyu1,Yang Yiqing1,Cheng Xiangran1,Ai Yulu1,Sun Xuemei1,Zeng Kaiwen1,Zhu Zhengfeng1,Peng Huisheng1ORCID

Affiliation:

1. State Key Laboratory of Molecular Engineering of Polymers Department of Macromolecular Science and Institute of Fiber Materials and Devices Fudan University Shanghai 200438 China

Abstract

AbstractFiber 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.

Funder

Science and Technology Commission of Shanghai Municipality

National Natural Science Foundation of China

Publisher

Wiley

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