Natural nori-based porous carbon composite for sustainable lithium-sulfur batteries

被引:0
作者
Hu Liu
WeiLin Liu
FanCheng Meng
LiangYu Jin
ShuLin Li
Sheng Cheng
ShuDong Jiang
RuLong Zhou
JieHua Liu
机构
[1] Hefei University of Technology,School of Materials Science and Engineering
[2] Hefei University of Technology,Instrumental Analysis Centre
[3] Anhui University,College of Chemistry and Chemical Engineering
来源
Science China Technological Sciences | 2022年 / 65卷
关键词
biomass; sustainable; porous carbon; cathode; Li-S battery;
D O I
暂无
中图分类号
学科分类号
摘要
The practical applications of lithium-sulfur (Li-S) batteries are limited by the low conductivity of sulfur and the shuttle effect of soluble polysulfides during the charge-discharge process. At the same time, biomass-based carbon materials have been acknowledged as the cost-effective and direct settlement to mitigate or overcome these problems due to their renewability, facile processing, and pollution-free characteristics. Therefore, in this work, we report the natural nori-based CoO nanoparticles decorated hierarchical porous carbon (HPC) for high-capacity Li-S battery cathodes. The HPC with an extremely high surface area of 2089 m2 g−1 provides a good substrate for the accommodation of CoO nanoparticles, which can effectively seize the lithium polysulfides and facilitate their redox conversion. As a result, the CoO-HPC/S cathode exhibits a high discharge capacity of 1557.1 mA h g−1, as well as excellent rate performance and cycling stability. Due to the naturally abundant nori-based cathode materials, the resultant Li-S battery is supposed to be an attractive and sustainable energy storage device.
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页码:2380 / 2387
页数:7
相关论文
共 186 条
  • [51] Zhong J(2021)Design, synthesis, and application of metal sulfides for Li-S batteries: Progress and prospects ChemNanoMat 7 34-undefined
  • [52] Xiao Q(2020)ZnS nanolayer coated hollow carbon spheres with enhanced rate and cycling performance for Li-S batteries Renew Energy 149 208-undefined
  • [53] Li G(2020)Recent advances of metal phosphides for Li-S chemistry Nanotechnology 31 025403-undefined
  • [54] Li M(2020)Long-life lithium-sulfur battery derived from nori-based nitrogen and oxygen dual-doped 3D hierarchical biochar J Electroanal Chem 873 114375-undefined
  • [55] Zhao C(2021) synthesis of nori-derived sponge-like N, P-codoped C/Co Chem Eng J 406 126802-undefined
  • [56] Liu L(2020)O Sustain Energy Fuels 4 3926-undefined
  • [57] Zhao H(2015) composite as advanced anode material for lithium-ion batteries J Phys Chem Lett 6 2163-undefined
  • [58] Yan Z(2022)Enhanced Li-O Nano-Micro Lett 14 50-undefined
  • [59] Yang Q W(2014) battery performance, using graphene-like nori-derived carbon as the cathode and adding LiI in the electrolyte as a promoter Carbon 70 241-undefined
  • [60] Wang Q(2016)Fabricating Li J Power Sources 324 547-undefined