期刊文献+

Enhanced lithium storage of mesoporous vanadium dioxide(B) nanorods by reduced graphene oxide support 被引量:2

Enhanced lithium storage of mesoporous vanadium dioxide(B) nanorods by reduced graphene oxide support
下载PDF
导出
摘要 A facile synthesis of vanadium oxide with reduced graphene oxide(rGO) is developed and used as cathode material for lithium ion batteries. VO_2(B) nanorods and VO_2(B)-rGO composite were prepared by a hydrothermal method using NaVO_3 precursor and sodium oxalate as a reducing agent. The monoclinic phase and nanorod like morphology of synthesized materials were confirmed by XRD, SEM, and TEM respectively. The electrochemical properties of samples were investigated at 1.5–4.0 V, and 0.1 C rate,and the VO_2(B) nanorods exhibit reversible capacity of about 159 mAh g^(-1), whereas VO_2(B)-rGO exhibits 274 mAh g^(-1). The reasonable discharge capacities were obtained at high rates. The enhanced performance in electrical energy storage system reveals the effectiveness of rGO in the composite, as it enhances the conductive electron pathway to overcome the intrinsic limits of single phase VO_2(B). A facile synthesis of vanadium oxide with reduced graphene oxide(rGO) is developed and used as cathode material for lithium ion batteries. VO_2(B) nanorods and VO_2(B)-rGO composite were prepared by a hydrothermal method using NaVO_3 precursor and sodium oxalate as a reducing agent. The monoclinic phase and nanorod like morphology of synthesized materials were confirmed by XRD, SEM, and TEM respectively. The electrochemical properties of samples were investigated at 1.5–4.0 V, and 0.1 C rate,and the VO_2(B) nanorods exhibit reversible capacity of about 159 mAh g^(-1), whereas VO_2(B)-rGO exhibits 274 mAh g^(-1). The reasonable discharge capacities were obtained at high rates. The enhanced performance in electrical energy storage system reveals the effectiveness of rGO in the composite, as it enhances the conductive electron pathway to overcome the intrinsic limits of single phase VO_2(B).
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第1期183-189,共7页 能源化学(英文版)
基金 supported financially by DST-SERB Govt of India, New Delhi (SB/FT/CS-083/2012) DST Nanomission Govt.of India, New Delhi (Project No.SR/NM/NS-1262/2013 (G) dated 18-03-2015) for financial support
关键词 VO2(B) and VO2(B)-rGO compositeNanorodsMesoporousLithium-ion battery VO2(B) and VO2(B)-rGO compositeNanorodsMesoporousLithium-ion battery
  • 相关文献

同被引文献9

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部