Abstract
We report the template-directed synthesis of sulphur-carbon nanotubes and their use to form a membrane that is binder-free, highly conductive and flexible. This nanostructured membrane is used as a self-supporting cathode without metal current-collectors for Li-S batteries. The membrane cathode has a high electrical conductivity and renders a long life of sulphur of over 100 charge-discharge cycles. High discharge capacity of sulphur was attained at 712 mA h gsulphur-1 (23 wt% S) and 520 mA h g sulphur-1 (50 wt% S) at a high current density (6 A g sulphur-1). The overall capacity of the flexible cathode correspondingly reaches 163 mA h g-1 (23 wt% S) and 260 mA h g -1 (50 wt% S). These results demonstrate the great potential of this nanostructured flexible membrane as a cathode for Li-S batteries with fast charge-discharge performance and long life. © 2012 The Royal Society of Chemistry.
Cite
CITATION STYLE
Zhou, G., Wang, D. W., Li, F., Hou, P. X., Yin, L., Liu, C., … Cheng, H. M. (2012). A flexible nanostructured sulphur-carbon nanotube cathode with high rate performance for Li-S batteries. Energy and Environmental Science, 5(10), 8901–8906. https://doi.org/10.1039/c2ee22294a
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.