阳极
电解质
枝晶(数学)
材料科学
化学工程
铝
阴极
接口(物质)
纳米技术
化学
电极
冶金
复合材料
数学
几何学
工程类
物理化学
毛细管数
毛细管作用
作者
Jiarui Fu,Zhaohui Yang,Kaiqi Li,Xinlong Zhang,Tianshuo Zhao,Ruiqi Cheng,Min Jiang,Yonghong Qin,Jiaojiao Zhang,Chaopeng Fu
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2025-03-11
卷期号:18 (5): 94907358-94907358
被引量:3
标识
DOI:10.26599/nr.2025.94907358
摘要
Aluminum (Al) metal is a promising anode material for rechargeable aluminum batteries (RABs) due to its high abundance and specific capacity. However, its application is limited by dendrite formation and ultra-thick separators are usually required. Here, we propose that silica nanoparticles (nano-SiO2) can serve as multifunctional additive for chloroaluminate electrolyte (IL) because of their unique physicochemical properties. By combining experimental and simulation studies, nano-SiO2 form a colloidal system with IL, which helps nano-SiO2 play a positive role throughout battery lifecycle. They help to uniform electric field, increase ion migration number and promote electrochemical reactions on the anode side, which inhibits the growth of Al dendrite and enhances the cycle life of battery. By using IL-SiO2-3‰, the cycle life of the symmetric cell increases to 2,300 h at 1 mA cm−2, which is approximately 80 times greater than that using IL. The cycle number of the Al//graphite full battery increases from 3644 in IL to over 26,000 in IL-SiO2-3‰ at 2 A g−1 with a capacity retention of ~99%. This work provides a valuable direction for the further optimization of the interface between metal anode and electrolyte in rechargeable batteries.
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