Carbon-coated Fe3O4 microspheres with a porous multideck-cage structure for highly reversible lithium storage

Chemical Communications : Chem Comm
Yanrong WangXiong Wen David Lou

Abstract

A novel H3PO4 etching strategy together with subsequent carbon coating has been developed for the synthesis of carbon-coated Fe3O4 microspheres with a porous multideck-cage structure. These carbon-coated Fe3O4 microspheres manifest high specific capacity (∼1100 m h g(-1) at 200 mA g(-1)) and excellent cycling stability for lithium storage.

References

Mar 31, 2005·Angewandte Chemie·Hong DengYadong Li
May 5, 2010·Advanced Materials·Chunmei BanAnne C Dillon
Jun 18, 2011·Chemical Communications : Chem Comm·Zhiyu WangXiong Wen David Lou
Oct 8, 2011·Journal of the American Chemical Society·Bao WangXiong Wen Lou

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Citations

Sep 24, 2015·Journal of Colloid and Interface Science·Huan ZhaoMing-Lai Fu
May 28, 2016·Environmental Science and Pollution Research International·Jung-Eui HongKwang-Sun Ryu
Jul 22, 2016·Chemical Society Reviews·Junghoon YangYong-Mook Kang
Aug 18, 2016·Advances in Colloid and Interface Science·Carlos Moreno-Castilla
Jan 17, 2017·Advanced Materials·Le YuXiong Wen David Lou
Dec 9, 2017·Microscopy and Microanalysis : the Official Journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada·Jun Young CheongIl-Doo Kim

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