Electrochemical properties of manganese oxide coated onto carbon nanotubes for energy-storage applications

Birnessite-type manganese dioxide (MnO 2) is coated uniformly on carbon nanotubes (CNTs) by employing a spontaneous direct redox reaction between the CNTs and permanganate ions (MnO 4 −). The initial specific capacitance of the MnO 2/CNT nanocomposite in an organic electrolyte at a large current den...

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Veröffentlicht in:Journal of power sources 2008-03, Vol.178 (1), p.483-489
Hauptverfasser: Ma, Sang-Bok, Nam, Kyung-Wan, Yoon, Won-Sub, Yang, Xiao-Qing, Ahn, Kyun-Young, Oh, Ki-Hwan, Kim, Kwang-Bum
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Sprache:eng
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Zusammenfassung:Birnessite-type manganese dioxide (MnO 2) is coated uniformly on carbon nanotubes (CNTs) by employing a spontaneous direct redox reaction between the CNTs and permanganate ions (MnO 4 −). The initial specific capacitance of the MnO 2/CNT nanocomposite in an organic electrolyte at a large current density of 1 A g −1 is 250 F g −1. This is equivalent to 139 mAh g −1 based on the total weight of the electrode material that includes the electroactive material, conducting agent and binder. The specific capacitance of the MnO 2 in the MnO 2/CNT nanocomposite is as high as 580 F g −1 (320 mAh g −1), indicating excellent electrochemical utilization of the MnO 2. The addition of CNTs as a conducting agent improves the high-rate capability of the MnO 2/CNT nanocomposite considerably. The in situ X-ray absorption near-edge structure (XANES) shows improvement in the structural and electrochemical reversibility of the MnO 2/CNT nanocomposite after heat-treatment.
ISSN:0378-7753
1873-2755
DOI:10.1016/j.jpowsour.2007.12.027