材料科学
电极
阳极
电解质
液态金属
电池(电)
相间
纳米技术
锚固
金属
光电子学
半电池
碳纤维
液晶
储能
复合材料
作者
Fangfang Xiao,Junkai Li,Kaizhao Wang,Kaizhao Wang,Jiale Wu,Yafei Wang,Kaijun Wang,Kaijun Wang,Zhaowei Sun,Juemin Yan,Jin Hu,Shizhao Xiong
标识
DOI:10.1021/acsami.5c17719
摘要
Free-standing and flexible electrodes have recently garnered significant attention in the development of multifunctional lithium-ion batteries (LIBs). However, their slow kinetics and poor mechanical properties have hindered their practical application. In this study, a self-supporting C@GaInSn@CF electrode with a robust three-dimensional structure is developed by cleverly anchoring a liquid metal on a carbon skeleton. The liquid metal can effectively repair electrode cracks and maintain the electrical connectivity of the electrode, exhibiting good reversibility and a high storage capacity. At the same time, the carbon-coated structure prevents the liquid metal from shedding and establishes a stable solid electrolyte interphase during cycling. Therefore, the flexible electrode has a stable ion transport capability and good mechanical compliance. The cell with this electrode delivers an enhanced capacity of 267 mAh g –1 at the rate of 2 A g –1 and an outstanding life of 1000 cycles at the rate of 1 A g –1 . The successful construction of a liquid-metal-based flexible anode provides a novel insight into the free-standing electrode and a significant step toward realizing high-performance LIBs.
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