Logo image
Direct growth of high-rate capability and high capacity copper sulfide nanowire array cathodes for lithium-ion batteries
Journal article   Peer reviewed

Direct growth of high-rate capability and high capacity copper sulfide nanowire array cathodes for lithium-ion batteries

Chen-Ho Lai, Kuo-Wei Huang, Ju-Hsiang Cheng, Chung-Yang Lee, Bing-Joe Hwang and Lih-Juann Chen
Journal of Materials Chemistry, Vol.20(32), pp.6638-6645
28/08/2010

Abstract

A general solution method for the growth of highly ordered large-scale Cu 2 S nanowire arrays onto the copper metal current collector substrates has been developed. The electrochemical behaviors of Cu 2 S nanowire array cathodes for lithium-ion battery applications reveal that they exhibit stable lithium-ion insertion/extraction reversibility, high reversible lithium storage capacity, long cycle life and outstanding rate capability. The superb electrochemical performance can be attributed to the nanowire arrays having increased reaction sites, improved cycle life in the face of mechanical strain and efficient charge transport. With the simplicity of fabrication and good electrochemical properties, the Cu 2 S nanowire arrays are promising cathode materials for the practical use in the next generation lithium-ion batteries. © 2010 The Royal Society of Chemistry.

Metrics

1 Record Views

Details

Logo image