Abstract
Mesoporous Ni(OH)2 is synthesized using sodium dodecyl sulfate as a template and urea as a hydrolysis-controlling agent. Mesoporous NiO with a centralized pore-size distribution is obtained by calcining Ni(OH)2 at different temperatures. The BET specific surface area reaches 477.7m 2g-1 for NiO calcined at 250°C. Structure characterizations indicate a good mesoporous structure for the nickel oxide samples. Cyclic voltammetry shows the NiO to have good capacitive behaviour due to its unique mesoporous structure when using a large amount of NiO to fabricate the electrode. Compared with NiO prepared by dip-coating and cathodic precipitation methods, mesoporous NiO with a controlled pore structure can be used in much larger amounts to fabricate electrodes and still maintain a high specific capacitance and good capacitive behaviour. © 2004 Elsevier B.V. All rights reserved.
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Xing, W., Li, F., Yan, Z. F., & Lu, G. Q. (2004). Synthesis and electrochemical properties of mesoporous nickel oxide. Journal of Power Sources, 134(2), 324–330. https://doi.org/10.1016/j.jpowsour.2004.03.038
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