电解质
阳极
材料科学
阴极
溶解
化学工程
枝晶(数学)
离子
耐久性
准固态
电导率
胶体
纳米技术
电化学
复合材料
化学
电极
色素敏化染料
几何学
数学
有机化学
物理化学
工程类
作者
Jiawei Gao,Xuesong Xie,Shuquan Liang,Bingan Lu,Jiang Zhou
出处
期刊:Nano-micro Letters
[Springer Science+Business Media]
日期:2021-02-11
卷期号:13 (1): 69-69
被引量:235
标识
DOI:10.1007/s40820-021-00595-6
摘要
Abstract Zinc-ion batteries (ZIBs) is a promising electrical energy storage candidate due to its eco-friendliness, low cost, and intrinsic safety, but on the cathode the element dissolution and the formation of irreversible products, and on the anode the growth of dendrite as well as irreversible products hinder its practical application. Herein, we propose a new type of the inorganic highly concentrated colloidal electrolytes (HCCE) for ZIBs promoting simultaneous robust protection of both cathode/anode leading to an effective suppression of element dissolution, dendrite, and irreversible products growth. The new HCCE has high Zn 2+ ion transference number (0.64) endowed by the limitation of SO 4 2− , the competitive ion conductivity (1.1 × 10 –2 S cm −1 ) and Zn 2+ ion diffusion enabled by the uniform pore distribution (3.6 nm) and the limited free water. The Zn/HCCE/α-MnO 2 cells exhibit high durability under both high and low current densities, which is almost 100% capacity retention at 200 mA g −1 after 400 cycles (290 mAh g −1 ) and 89% capacity retention under 500 mA g −1 after 1000 cycles (212 mAh g −1 ). Considering material sustainability and batteries’ high performances, the colloidal electrolyte may provide a feasible substitute beyond the liquid and all-solid-state electrolyte of ZIBs.
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