有机硫化合物
化学
阴极
聚合物
导电聚合物
有机化学
纳米技术
化学工程
硫黄
物理化学
材料科学
工程类
作者
Xian Zeng,Zi-Jian Yi,Guannan Zhu,Ningning Zhu,Yanfei Chen,Ji‐Miao Xiao,Run-Hang Chen,Menghua Yang,Hongchang Jin,De‐Shan Bin,Dan Li
摘要
Na-S and K-S batteries, with high-energy density, using naturally more abundant and affordable metals compared with rare resources like Li, Co, and Ni elements, have inspired intense research interest. However, the sulfur cathodes for Na/K storage are plagued by soluble polysulfide shuttling, larger volumetric deformation, and sluggish redox kinetics. Here, we report that a conductive organosulfur polymer microcage, fabricated facilely with the microbe and elemental sulfur as precursors, can effectively address these issues for stable high-capacity Na-S and K-S batteries. The covalently bonded short-chain sulfur species enable superior reaction kinetics and avoid soluble polysulfide formation. The microcage architecture with built-in cavities buffers the volume deformation to ensure a resilient electrode. The resultant conductive organosulfur polymer can promise a combination of high capacity and extraordinary cyclability with a promising rate and Coulombic efficiency. Especially, as a K-S battery cathode, it could deliver a high capacity of 1206.5 mAh g
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