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Photocapacitor integrating voltage-adjustable hybrid supercapacitor and silicon solar cell generating a Joule efficiency of 86%

Energy & Environmental Science [2022]
Zeyu Song, Jihuai Wu, Yongguang Tu, Liuxue Sun, Tingting Zhu, Guodong Li, Xiaobing Wang, Yitian Du, Chunyan Deng, Qi Chen, Weihai Sun, Miaoliang Huang, Leqing Fan, Yunfang Huang, Yuelin Wei, Yiming Xie, Yu Lin, Hongwei Chen, Jianming Lin, Lan Zhan, Peng Gao, Mohammad Khaja Nazeeruddin, Wei Huang
ABSTRACT

Photocapacitor integrating both energy harvest and storage functions into a single device is a frontier research orientation, which facilitates the efficient and sustainable utilization of green energy. However, the multi-functions in one device and structural complexity of the integrated device, particularly the mismatch between energy harvest and storage units, lead to a relatively large energy loss in the energy storage and output processes. Here, we design a voltage adjustable hybrid supercapacitor (VAHSC) as an energy storage unit of a three-terminal photocapacitor. The VAHSC effectively harmonizes the energy harvest and storage units, resulting in the current, voltage, power, and energy match between both units. The optimal photocapacitor achieves a storage efficiency as high as 98.28% and Joule efficiency of 86.01%, along with excellent charge/discharge cycle stability. The great leap in this efficiency marks a substantial step towards the practical application of solar-charging energy storage integrated devices.

MATERIALS

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