Issue 7, 2018

Enhanced electrochemical performance of lithium ion batteries using Sb2S3 nanorods wrapped in graphene nanosheets as anode materials

Abstract

Antimony sulfide can be used as a promising anode material for lithium ion batteries due to its high theoretical specific capacity derived from sequential conversion and alloying lithium insertion reactions. However, the volume variation during the lithiation/delithiation process leads to capacity fading and cyclic instability. We report a facile, one-pot hydrothermal strategy to prepare Sb2S3 nanorods wrapped in graphene sheets that are promising anode materials for lithium ion batteries. The graphene sheets serve a dual function: as heterogeneous nucleation centers in the formation process of Sb2S3 nanorods, and as a structural buffer to accommodate the volume variation during the cycling process. The resulting composites exhibit excellent electrochemical performance with a highly reversible specific capacity of ∼910 mA h g−1, cycling at 100 mA g−1, as well as good rate capability and cyclic stability derived from their unique structural features.

Graphical abstract: Enhanced electrochemical performance of lithium ion batteries using Sb2S3 nanorods wrapped in graphene nanosheets as anode materials

Supplementary files

Article information

Article type
Communication
Submitted
19 Dec 2017
Accepted
17 Jan 2018
First published
07 Feb 2018

Nanoscale, 2018,10, 3159-3165

Enhanced electrochemical performance of lithium ion batteries using Sb2S3 nanorods wrapped in graphene nanosheets as anode materials

Y. Dong, S. Yang, Z. Zhang, J. Lee and J. A. Zapien, Nanoscale, 2018, 10, 3159 DOI: 10.1039/C7NR09441H

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