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Direct Superassemblies of Freestanding Metal-Carbon Frameworks Featuring Reversible Crystalline-Phase Transformation for Electrochemical Sodium Storage

Authors :
Cordelia Selomulya
Hanxing Chen
Jing Wei
Dongyuan Zhao
Biao Kong
Chengxin Peng
Jinhu Yang
Yang Wang
Wei Zhang
Liudi Zhang
Xiaocheng Lin
Zaiwang Zhao
Yong Liu
Jing Tang
Haili He
Yang Liu
Jianping Yang
Lianhai Zu
Wei Luo
Yan Zhang
Source :
Journal of the American Chemical Society. 138(50)
Publication Year :
2016

Abstract

High-power sodium-ion batteries (SIBs) with long-term cycling attract increasing attention for large-scale energy storage. However, traditional SIBs toward practical applications still suffer from low rate capability and poor cycle induced by pulverization and amorphorization of anodes at high rate (over 5 C) during the fast ion insertion/extraction process. The present work demonstrates a robust strategy for a variety of (Sb–C, Bi–C, Sn–C, Ge–C, Sb–Bi–C) freestanding metal–carbon framework thin films via a space-confined superassembly (SCSA) strategy. The sodium-ion battery employing the Sb–C framework exhibits an unprecedented performance with a high specific capacity of 246 mAh g–1, long life cycle (5000 cycles), and superb capacity retention (almost 100%) at a high rate of 7.5 C (3.51A g–1). Further investigation indicates that the unique framework structure enables unusual reversible crystalline-phase transformation, guaranteeing the fast and long-cyclability sodium storage. This study may open an av...

Details

ISSN :
15205126
Volume :
138
Issue :
50
Database :
OpenAIRE
Journal :
Journal of the American Chemical Society
Accession number :
edsair.doi.dedup.....e3b2fc4918c921a79445ed476aaac3a7