Logo image
Oriented growth of large-scale nickel sulfide nanowire arrays via a general solution route for lithium-ion battery cathode applications
Journal article   Peer reviewed

Oriented growth of large-scale nickel sulfide nanowire arrays via a general solution route for lithium-ion battery cathode applications

Chen-Ho Lai, Kuo-Wei Huang, Ju-Hsiang Cheng, Chung-Yang Lee, Wei-Fan Lee, Chi-Te Huang, Bing-Joe Hwang and Lih-Juann Chen
Journal of Materials Chemistry, Vol.19(39), pp.7277-7283
2009

Abstract

A general solution method for the oriented growth of large-scale Ni 3 S 2 nanowire arrays has been developed. The controlled oxidation scheme by combining ethylenediamine-chalcogens and hydrazine in alkali solution has been shown to have great advantages for the fabrication of metal chalcogenides with fewer instrumental limitations. This method is reliable and works in mild template-free conditions for the production of single-crystalline nanowire arrays. It provides a convenient route for the large-scale growth of pure-phase metal chalcogenide nanowire arrays on metal substrates. The electrochemical measurement results of Ni 3 S 2 nanowire arrays for lithium-ion battery electrode applications reveal that they have high reversible lithium storage capacity, long cycle life, good cyclic stability and high charge/discharge rate. With the simplicity of fabrication and good electrochemical performance, Ni 3 S 2 nanowire arrays are promising cathode materials for lithium-ion batteries. © 2009 The Royal Society of Chemistry.

Metrics

1 Record Views

Details

Logo image