Cutting and Unzipping Multiwalled Carbon Nanotubes into Curved Graphene Nanosheets and Their Enhanced Supercapacitor Performance
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  • 作者:Huanwen Wang ; Yalan Wang ; Zhongai Hu ; Xuefeng Wang
  • 刊名:ACS Applied Materials & Interfaces
  • 出版年:2012
  • 出版时间:December 26, 2012
  • 年:2012
  • 卷:4
  • 期:12
  • 页码:6827-6834
  • 全文大小:607K
  • 年卷期:v.4,no.12(December 26, 2012)
  • ISSN:1944-8252
文摘
We report a remarkable transformation of multiwalled carbon nanotubes (MWCNTs) to curved graphene nanosheets (CGN) by the Hummers method. Through this simple process, MWCNTs can be cut and unzipped in the transverse and longitudinal directions, respectively. The as-obtained CGN possess the unique hybrid structure of 1D nanotube and 2D graphene. Such a particular structure together with the improved effective surface area affords high specific capacitance and good cycling stability during the charge鈥揹ischarge process when used as supercapacitor electrodes. The electrochemical measurements show that CGN exhibit higher capacitive properties than pristine MWCNTs in three different types of aqueous electrolytes, 1 M KOH, 1 M H2SO4, and 1 M Na2SO4. A specific capacitance of as high as 256 F g鈥? at a current density of 0.3 A g鈥? is achieved over the CGN material. The improved capacitance may be attributed to high accessibility to electrolyte ions, extended defect density, and increased effective surface area. Meanwhile, this high-yield production of graphene from low cost MWCNTs is important for the scalable synthesis and industrial application of graphene. Furthermore, this novel CGN nanostructure could also be promisingly applied in many fields such as nanoelectronics, sensors, nanocomposites, batteries, and gas storage.

Keywords:

multiwalled carbon nanotubes; graphene; the Hummers method; supercapacitors; energy storage

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