电解质
电化学
阴极
硫化物
硫黄
化学
化学工程
锂(药物)
无机化学
比能量
材料科学
电极
冶金
物理化学
热力学
物理
工程类
内分泌学
医学
作者
Hao Guo,Jing Hu,Huimin Yuan,Ningning Wu,Yingzhi Li,Guiyu Liu,Ning Qin,Kemeng Liao,Zhiqiang Li,Wen Luo,Shuai Gu,Wei Wan,Bin Shi,Xusheng Xu,Qinghua Yang,Jiayuan Shi,Zhouguang Lu
标识
DOI:10.1002/smtd.202101402
摘要
Fabrication of a highly porous sulfur host and using excess electrolyte is a common strategy to enhance sulfur utilization. However, flooded electrolyte limits the practical energy density of Li-S pouch cells. In this study, a novel Fe0.34 Co0.33 Ni0.33 S2 (FCN) is proposed as host for sulfur to realize Ah-level Li-S full cells demonstrating excellent electrochemical performances under 2 µL mg-1 lean electrolyte conditions. Moreover, Kelvin probe force microscopy shows that the FCN surface contains positive charge with a potential of ≈70 mV, improving the binding of polysulfides through Lewis acid base interaction. In particular, the FCN@S possesses inherent electrochemical activity of simultaneous anionic and cationic redox for lithium storage in the voltage window of 1.8-2.1 V, which additionally contributes to the specific capacity. Due to the low carbon content (≈10 wt%), the sulfur loading is as high as ≈6 mg cm-2 , approaching an outstanding energy density of 394.9 and 267.2 Wh kg-1 at the current density of 1.5 and 4 mA cm-2 , respectively. Moreover, after 60 cycles at 1.5 mA cm-2 , the pouch cell still retains an energy of 300.2 Wh kg-1 . This study represents a milestone in the practical applications of high-energy Li-S batteries.
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