Wei Meng, Zhang Qiuman, Huang Lisha, Xue Zhengtao, Gao Qiongzhi, Cai Xin, Zhang Shengsen, Fang Yueping, Peng Feng, Yuan Teng, Yang Siyuan
Key Laboratory for Biobased Materials and Energy of Ministry of Education, Guangdong Laboratory for Lingnan Modern Agriculture, College of Materials and Energy, South China Agricultural University, Guangzhou 510642, China.
School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou 51006, China.
Nano Lett. 2024 Sep 4;24(35):10827-10833. doi: 10.1021/acs.nanolett.4c02255. Epub 2024 Aug 21.
Herein, Cu-foam-supported CuO nanowire arrays covered with CuS nanosheet substrates (Cu/CuO/CuS) are adopted as efficient photoelectrodes for photorechargeable lithium-ion batteries (PR-LIBs). The assembled PR-LIB exhibits remarkable solar energy conversion efficiency alongside superior lithium storage capabilities. Without an electrical power supply, the photocharged PR-LIB sustained a discharge process for 63.0 h under a constant current density of 0.05 mA cm. The corresponding solar-to-electrical energy conversion efficiency is 4.50%, which is an impressive achievement among recently reported contemporary technologies. Mechanism investigation shows that the Cu/CuO/CuS photogenerated carriers augment the extraction and insertion of Li according to different oxidation and reduction reactions in the charging and discharging reactions. This research delineates a refined model system and proposes innovative directions for developing efficient heterojunction photoelectrodes, significantly propelling the development of PR-LIB technology.
在此,采用覆盖有CuS纳米片基底的泡沫铜负载CuO纳米线阵列(Cu/CuO/CuS)作为可光充电锂离子电池(PR-LIBs)的高效光电极。组装好的PR-LIB展现出卓越的太阳能转换效率以及出色的锂存储能力。在没有电源供应的情况下,光充电的PR-LIB在0.05 mA cm的恒定电流密度下维持了63.0小时的放电过程。相应的太阳能到电能的转换效率为4.50%,这在最近报道的当代技术中是一项令人瞩目的成就。机理研究表明,Cu/CuO/CuS光生载流子根据充电和放电反应中不同的氧化和还原反应增强了Li的提取和插入。这项研究描绘了一个精细的模型系统,并为开发高效异质结光电极提出了创新方向,显著推动了PR-LIB技术的发展。