石墨烯
水溶液
阳极
阴极
材料科学
热液循环
化学工程
功率密度
容量损失
电流密度
纳米技术
化学
电极
功率(物理)
工程类
物理化学
物理
量子力学
作者
Yilin Liu,Meng‐Qiu Li,Gui‐Gen Wang,Le‐Yang Dang,Fei Li,Dong Yan,Manlin Tan,Huayu Zhang,Hui Ying Yang
标识
DOI:10.1016/j.electacta.2022.140833
摘要
To achieve high-performance aqueous rechargeable alkaline batteries (ARABs), durable and high-rate anode materials should be developed. Bi-based materials have always been considered as promising anodes due to their enormous capacity, adequate negative operating voltage range, and three-electron redox characteristics. Nonetheless, the poor kinetics and low cycling stability of bi-based materials have severely limited their applications for ARABs. Here inspired by the unique structural characteristic of two-dimensional (2D) materials with a fast ion diffusion channel and relatively robust structure, 2D/2D Bi2O2[email protected] nanosheets were synthesized using a one-step hydrothermal process as the anode material for ARABs. At a current density of 1 A g−1, the as-optimized anodes exhibit a high specific capacity of 250.51 mAh g−1. Using Bi2O2[email protected] NSs as the anode and (NiCo)9S8 as the cathode, the full cell exhibit a high energy density of 82.91 W h kg−1, a high power density of 7.59 kW kg−1, and excellent cycling stability, with a capacity retention rate of 92.74% after 5,000 cycles. This work could open up a way for environmentally friendly and high-performance anode materials.
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