4.8 Article

A One-Step and Binder-Free Method to Fabricate Hierarchical Nickel-Based Supercapacitor Electrodes with Excellent Performance

期刊

ADVANCED FUNCTIONAL MATERIALS
卷 23, 期 29, 页码 3675-3681

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.201203418

关键词

supercapacitors; electrodes; hierarchical materials; anodization; nickel

资金

  1. Research Grants Council of the Hong Kong Special Administrative Region, China [PolyU5187/09E]
  2. Hong Kong Polytechnic University [A-PL16, 5-ZG91]
  3. Guangdong science and technology department [2012A090300013]
  4. Fundamental Research Funds for the Central Universities [2012ZZ0011]

向作者/读者索取更多资源

Research is currently being carried out in the search for alternative electrode materials to replace the expensive and toxic RuO2 -based electrode. As a typical example, nickel oxide or hydroxide has been widely studied but the results are far from satisfactory. Here, using a facile one-step anodization method, a hierarchical nickel compound (HNC) fi lm with an interconnecting 3D nanofl ake structure is obtained, providing large electrochemically active surface area and interconnecting nanoscale pore channels for ion transport. The HNC electrode demonstrates signifi cantly improved capacitance, 70 times higher than the reported NiO-TiO2 nanotube array electrode with similar thickness. The charge/ discharge kinetics are also superior, showing only a 24% capacitance reduction when the scan rate is increased by 50 times, as compared with the typical 70% capacitance reduction for pseudocapacitor electrodes under the same conditions. HNC exhibits an extraordinary excellent cycle life; capacitance increases to 115% after 4500 test cycles. Furthermore, because HNC is in intimate contact with the current collector, it is not necessary to use conducting agents or binders, which reduces the electrode weight and facilitates the electrode preparation process. The method is low cost, facile, scalable, additive free, and is promising for fabricating supercapacitor electrode with excellent performance.

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