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http://dx.doi.org/10.4313/JKEM.2004.17.5.486

Electrochemical Characteristics of MnO2 Electrodes as a function of Manufacturing Process  

김현식 ((주)매트론 기술연구소)
이해연 ((주)매트론 기술연구)
허정섭 ((주)매트론 기술연구)
이동윤 (한국전기연구원)
Publication Information
Journal of the Korean Institute of Electrical and Electronic Material Engineers / v.17, no.5, 2004 , pp. 486-491 More about this Journal
Abstract
Dimensionally stable anode(DSA) can be used for the hydro-metallurgy of non-ferrous metals like as Zn, and the electrolysis of sea water. MnO$_2$ electrode satisfies the requirements of DSA, and has a good cycle life and a low overpotential for oxygen evolution. MnO$_2$ electrodes based on Ti matrix were prepared by using thermal decomposition method and also MnO$_2$ was coated on Ti and Pb matrix with DMF and PVDF compositions. The MnO$_2$ electrodes prepared by thermal decomposition method had very weak adhesive strength onto Ti matrix and MnO$_2$ layer was removed out so that electrochemical properties for MnO$_2$ were not investigated. The viscosity of solvent used as a binder of MnO$_2$ Powder increased with the increasing PVDF contents. The thickness of the MnO$_2$ layer on Pb matrix in DSA, which was prepared with 5 times dipping at the solution mixed with PVDF : DMF = 1 : 9, was 150${\mu}{\textrm}{m}$. When the ratio of PVDF to MnO$_2$ was lower than 1 : 6, the Pb electrode didn't show any reaction irrespective of the concentrations of DMF. However, When the ratio of PVDF to MnO$_2$ was higher than 1: 6, the Pb electrode showed constant current reactions and homogeneous cyclic voltammetry even though at a high cycle. The reason for the high current and homogeneous cyclic voltammetry is the good catalytic reactions of MnO$_2$ powder in electrode.
Keywords
Hydro-metallurgy; Thermal decomposition; $MnO_2$; DSA; Overpotential;
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