电催化剂
溶解
材料科学
化学工程
镍
阴极
碘
拉曼光谱
氧化还原
纳米技术
无机化学
电极
电化学
化学
冶金
物理化学
物理
工程类
光学
作者
Lianbo Ma,Guoyin Zhu,Ziwei Wang,Acheng Zhu,Konglin Wu,Bo Peng,Jie Xu,Donghong Wang,Zhong Jin
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-06-01
卷期号:23 (11): 5272-5280
被引量:188
标识
DOI:10.1021/acs.nanolett.3c01310
摘要
Zinc–iodine (Zn–I 2 ) batteries have garnered significant attention for their high energy density, low cost, and inherent safety. However, several challenges, including polyiodide dissolution and shuttling, sluggish iodine redox kinetics, and low electrical conductivity, limit their practical applications. Herein, we designed a highly efficient electrocatalyst for Zn–I 2 batteries by uniformly dispersing Ni single atoms (NiSAs) on hierarchical porous carbon skeletons (NiSAs-HPC). In situ Raman analysis revealed that the conversion of soluble polyiodides (I 3 – and I 5 – ) was significantly accelerated using NiSAs-HPC because of the remarkable electrocatalytic activity of NiSAs. The resulting Zn–I 2 batteries with NiSAs-HPC/I 2 cathodes delivered exceptional rate capability (121 mAh g –1 at 50 C), and ultralong cyclic stability (over 40 000 cycles at 50 C). Even under 11.6 mg cm –2 iodine, Zn–I 2 batteries still exhibited an impressive cyclic stability with a capacity retention of 93.4% and 141 mAh g –1 after 10 000 cycles at 10 C.
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