电解质
材料科学
电化学
硫化物
化学工程
快离子导体
涂层
电极
阴极
无机化学
纳米技术
化学
冶金
物理化学
工程类
作者
Seungwoo Lee,Hyungjun Lee,Seungmin Han,Yeseung Lee,Seho Sun,Jaeik Kim,Joonhyeok Park,Seunggun Choi,Jiwoon Kim,Jin-Hee Jung,Jin-Woo Jeong,Taeseup Song,Ungyu Paik
摘要
ABSTRACT All‐solid‐state batteries (ASSBs) have garnered significant interest as the next‐generation in battery technology, praised for their superior safety and high energy density. However, a conductive agent accelerates the undesirable side reactions of sulfide‐based solid electrolytes, resulting in poor electrochemical properties with increased interfacial resistance. Here, we propose a wet chemical method rationally designed to achieve a conformal coating of lithium–indium chloride (Li 3 InCl 6 ) onto vapor‐grown carbon fibers (VGCFs) as conductive agents. First, with the advantage of the Li 3 InCl 6 protective layer, use of VGCF@Li 3 InCl 6 leads to enhanced interfacial stability and improved electrochemical properties, including stable cycle performance. These results indicate that the Li 3 InCl 6 protective layer suppresses the unwanted reaction between Li 6 PS 5 Cl and VGCF. Second, VGCF@Li 3 InCl 6 effectively promotes polytetrafluoroethylene fibrillization, leading to a homogeneous electrode microstructure. The uniform distribution of the cathode active material in the electrode results in reduced charge‐transfer resistance and enhanced Li‐ion kinetics. As a result, a full cell with the LiNi x Mn y Co z O 2 /VGCF@Li 3 InCl 6 electrode shows an areal capacity of 7.7 mAh cm −2 at 0.05 C and long‐term cycle stability of 77.9% over 400 cycles at 0.2 C. This study offers a strategy for utilizing stable carbon‐based conductive agents in sulfide‐based ASSBs to enhance their electrochemical performance.
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