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Air-Stable Porous Fe2N Encapsulated in Carbon Microboxes with High Volumetric Lithium Storage Capacity and a Long Cycle Life

Authors :
Kangning Zhao
Bingliang Wang
Yifan Dong
Song Jin
Yanhao Yu
Liqiang Mai
Xudong Wang
Source :
Nano Letters. 17:5740-5746
Publication Year :
2017
Publisher :
American Chemical Society (ACS), 2017.

Abstract

The development of inexpensive electrode materials with a high volumetric capacity and long cycle-life is a central issue for large-scale lithium-ion batteries. Here, we report a nanostructured porous Fe2N anode fully encapsulated in carbon microboxes (Fe2N@C) prepared through a facile confined anion conversion from polymer coated Fe2O3 microcubes. The resulting carbon microboxes could not only protect the air-sensitive Fe2N from oxidation but also retain thin and stable SEI layer. The appropriate internal voids in the Fe2N cubes help to release the volume expansion during lithiation/delithiation processes, and Fe2N is kept inside the carbon microboxes without breaking the shell, resulting in a very low electrode volume expansion (the electrode thickness variation upon lithiation is ∼9%). Therefore, the Fe2N@C electrodes maintain high volumetric capacity (1030 mA h cm–3 based on the lithiation-state electrode volume) comparable to silicon anodes, stable cycling performance (a capacity retention of over 91...

Details

ISSN :
15306992 and 15306984
Volume :
17
Database :
OpenAIRE
Journal :
Nano Letters
Accession number :
edsair.doi...........186402e491c2cb2e659d8110f4d0d06e