MXenes公司
材料科学
电化学
电解质
溶解
氮化物
化学工程
碳化物
超级电容器
无机化学
电极
熔盐
纳米技术
化学
图层(电子)
冶金
物理化学
工程类
作者
Youbing Li,Hui Shao,Zifeng Lin,Jun Lu,Liyuan Liu,Benjamin Duployer,Per O. Å. Persson,Per Eklund,Lars Hultman,Mian Li,Ke Chen,Xian‐Hu Zha,Shiyu Du,Patrick Rozier,Zhifang Chai,Encarnación Raymundo‐Piñero,Pierre‐Louis Taberna,Patrice Simon,Qing Huang
出处
期刊:Nature Materials
[Springer Nature]
日期:2020-04-13
卷期号:19 (8): 894-899
被引量:1125
标识
DOI:10.1038/s41563-020-0657-0
摘要
Two-dimensional carbides and nitrides of transition metals, known as MXenes, are a fast-growing family of materials that have attracted attention as energy storage materials. MXenes are mainly prepared from Al-containing MAX phases (where A = Al) by Al dissolution in F-containing solution; most other MAX phases have not been explored. Here a redox-controlled A-site etching of MAX phases in Lewis acidic melts is proposed and validated by the synthesis of various MXenes from unconventional MAX-phase precursors with A elements Si, Zn and Ga. A negative electrode of Ti3C2 MXene material obtained through this molten salt synthesis method delivers a Li+ storage capacity of up to 738 C g−1 (205 mAh g−1) with high charge–discharge rate and a pseudocapacitive-like electrochemical signature in 1 M LiPF6 carbonate-based electrolyte. MXenes prepared via this molten salt synthesis route may prove suitable for use as high-rate negative-electrode materials for electrochemical energy storage applications. Two-dimensional transition metal carbides and nitrides, known as MXenes, are currently considered as energy storage materials. A generic Lewis acidic etching route for preparing high-rate negative-electrode MXenes with enhanced electrochemical performance in non-aqueous electrolyte is now proposed.
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