多硫化物
层状结构
分离器(采油)
硫黄
阳极
碳化
多孔性
材料科学
碳纤维
化学工程
化学
扫描电子显微镜
复合材料
电解质
冶金
工程类
电极
物理化学
物理
复合数
热力学
作者
Peifan Wang,Xin Dai,Peng Xu,Sijiang Hu,Xuyang Xiong,Kunyang Zou,Shengwu Guo,Junjie Sun,Chaofeng Zhang,Yongning Liu,Tengfei Zhou,Yuanzhen Chen
出处
期刊:eScience
[Elsevier]
日期:2022-12-22
卷期号:3 (1): 100088-100088
被引量:61
标识
DOI:10.1016/j.esci.2022.100088
摘要
A robust three-dimensional (3D) interconnected sulfur host and a polysulfide-proof interlayer are key components in high-performance Li–S batteries. Herein, cellulose-based 3D hierarchical porous carbon (HPC) and two-dimensional (2D) lamellar porous carbon (LPC) are employed as the sulfur host and polysulfide-proof interlayer, respectively, for a Li–S battery. The 3D HPC displays a cross-linked macroporous structure, which allows high sulfur loading and restriction capability and provides unobstructed electrolyte diffusion channels. With a stackable carbon sheet of 2D LPC that has a large plane view size and is ultrathin and porous, the LPC-coated separator effectively inhibits polysulfides. An optimized combination of the HPC and LPC yields an electrode structure that effectively protects the lithium anode against corrosion by polysulfides, giving the cell a high capacity of 1339.4 mAh g−1 and high stability, with a capacity decay rate of 0.021% per cycle at 0.2C. This work provides a new understanding of biomaterials and offers a novel strategy to improve the performance of Li–S batteries for practical applications.
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