4.0 Article

Electronic double layer supercapacitor based on three-dimensional silicon microchannel plates in organic electrolyte

期刊

MATERIALS RESEARCH INNOVATIONS
卷 19, 期 4, 页码 303-309

出版社

MANEY PUBLISHING
DOI: 10.1179/1433075X14Y.0000000264

关键词

Supercapacitor; Silicon microchannel plates; Organic electrolyte; Nanostructured materials; Electrochemical properties

资金

  1. Shanghai Pujiang Program [14PJ1403600]
  2. Shanghai Natural Sciences Foundation [11ZR14 11000]
  3. Shanghai Fundamental Key Project [11JC 1403700]
  4. China NSFC [61176108]
  5. PCSIRT
  6. Research Innovation Foundation of ECNU [7821 0245]
  7. City University of Hong Kong Applied Research Grant (ARG) [9667085]
  8. Guangdong-Hong Kong Technology Cooperation Funding Scheme (TCFS) [GHP/015/12SZ]

向作者/读者索取更多资源

Spurred by the fast development and commercial appeal of the energy storage device, supercapacitor with large capacity and wide potential range is being more and more popular. An electronic double layer supercapacitor consisting of three-dimensional silicon microchannel plates and electroplated MnO2 nanoflakes as the active materials of the positive electrode is fabricated and evaluated systematically in an organic electrolyte (1M LiClO4 in propylene carbonate). Its composition, morphology, electrochemical impedance and charge storage mechanism are studied and compared to that of a planar structure. The silicon microchannel plates increase the specific area for loading of active materials. This supercapacitor with a large aspect ratio delivers excellent capacitive performance in limited space and weight. A single device made of the materials can power light emitting diodes, demonstrating its commercial potential.

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