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Beyond a doubt, Li ion battery ( LIB) has reshaped our livesfun-damentally since its advent in 1990s. After 30 years' optimiza-tion, the energy density of LIBs based on intercalation chemis-tries has approached the limit of ~ 300 Wh/kg. Any further improvement of energy density calls for new battery chemistries, among which Li-S batteries are regarded as one of the most pro-mising energy storage alternatives because of the high theoretical specific energy (2600 Wh/kg) and low cost of the sulfur since their renaissance in 2009[1] . After a decade' s development, the electrochemical performance of the Li-S batteries has achieved great progress in terms of cycling and rate performances in coin cell configuration. However, to commercialize the Li-S batteries, several critical issues should be carefully tackled[2-5]: ( 1) the areal capacity loading of the sulfur should be substantially increased to the level of the commercial cathodes;( 2) the elec-trolyte volume should be reduced to the level of commercial LIBs;( 3 ) the shuttle reactions and the Li metal corrosion should be eliminated;( 4) the sluggish conversion-reaction kinetics should be further enhanced. These four issues are highly correlated and plague researchers for years.
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篇名 An Efficient Macroporous Catalytic Cathode for Li-S Battery
来源期刊 材料导报 学科
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年,卷(期) 2021,(1) 所属期刊栏目 HIGHLIGHT
研究方向 页码范围 1-2
页数 2页 分类号
字数 语种 中文
DOI 10.11896/j.issn.1005-023X.2021.01.h01
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材料导报
半月刊
1005-023X
50-1078/TB
大16开
重庆市渝北区洪湖西路18号
78-93
1987
chi
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16557
总下载数(次)
86
总被引数(次)
145687
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