Multiplying Light Harvest Driven by Hybrid-Reflections 3D Electrodes Achieves High-Availability Photo-Charging Zinc-Ion Batteries

被引:23
作者
Zhang, Minggang [1 ]
Pan, Longkai [1 ]
Jin, Zhipeng [1 ]
Wang, Xiao [1 ]
Mei, Hui [1 ]
Cheng, Laifei [1 ]
Zhang, Litong [1 ]
机构
[1] Northwestern Polytech Univ, Sch Mat Sci & Engn, Sci & Technol Thermostruct Composite Mat Lab, Xian 710072, Shaanxi, Peoples R China
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
clean energy harvest; high availability; light trap; photo charging; zinc-ion batteries; SOLAR; CAPACITY;
D O I
10.1002/aenm.202204058
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Independent photo-charging technologies based on aqueous zinc-ion batteries (ZIBs) are promising candidates for next-generation renewable energy systems. The conflict between light utilization and electrochemical performance in the planar electrode severely limits the availability of photo-charging ZIBs. Herein, 3D light-trapping structures (LTSs) are proposed and applied in a rigid VO2/C@SiCuOC electrode. A hybrid-reflection effect driven by LTSs is employed to improve light-harvesting efficiency. The suitable energy levels of VO2 and C ensure charge transport, while the rigid SiCuOC support meets the stability requirements. Such a 3D VO2/C@SiCuOC electrode exhibits a multiplying photo-response current density of 42.2 mu A cm(-2) (approximate to 400% of the plate) and delivers a higher energy density (0.19 mWh cm(-2) at 0.51 mW cm(-2)). More importantly, in a realistic environment (dark for 16 h and light for 8 h), the photo-charging ZIBs integrated into a roof exhibit an exciting open circuit voltage of 3.176 V (three in series) and supply electricity continuously. The high strength (over 9 MPa) of the photo-charging ZIBs inherited from the 3D rigid electrode further enables its practical application. The enhanced performance of the photo-charging ZIBs obtained from structural optimization provides unique inspiration for next-generation clean energy harvest/storage systems.
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页数:13
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