材料科学
阳极
剥离(纤维)
电解质
金属锂
成核
复合材料
图层(电子)
化学工程
纳米技术
电极
化学
工程类
物理化学
有机化学
作者
Tao Li,Peng Shi,Rui Zhang,He Liu,Xin‐Bing Cheng,Qiang Zhang
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2019-03-26
卷期号:12 (9): 2224-2229
被引量:45
标识
DOI:10.1007/s12274-019-2368-x
摘要
Thin artificial solid electrolyte coatings are effective to enhance the electrochemical performances and safety issues of lithium (Li) metal anode. However, massive and efficient fabrication of artificial protection layers on Li metal anode surface remains challenging. Herein, we describe a sandwiched Li metal anode fabricated through a continuous roll to roll calendering method to implant a thin and large-area carbon layer on Li metal anode surface at room temperature. Specifically, a carbon layer (~ 3 μm in thickness) can be entirely grafted from Cu substrate to 50 μm Li belt surface due to the stickiness of metallic Li. The carbon layer not only plays a critical role in providing rich nucleation sites for Li plating, but more importantly diminishes the metallurgical nonuniformity effects (slip lines) on stripping. Therefore, even Li plating/stripping morphologies are achieved and the as-obtained sandwiched Li/C composite anodes exhibit improved cycling stability both in Li | LiFePO4 and Li | S coin cells and pouch cells. This continuous roll to roll calendering strategy opens a new avenue for grafting various thin artificial protection layers on Li metal surface for safe rechargeable batteries.
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