Electrochemical behavior of high transition temperature superconducting oxides.
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概要
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Typical high transition temperature (high-<I>T</I><SUB>c</SUB>) superconducting oxides were used as electrodes in order to investigate their electrochemical behavior at room temperature. Chemical stability of these materials in various solutions was also tested. These superconducting oxides were stable in nonaqueous solutions, but is was very difficult to protect electrical contacts from the solvents because of porous structures of these oxides. These materials were rather stable in highly concentrated alkaline solutions while unstable in neutral and acid solutions. Electrochemical experiments were carried out in alkaline solutions, and the following results were obtained: (1) All of the high-<I>T</I><SUB>c</SUB> superconducting oxides were unstable at cathodic polarization. (2) Oxygen evolution was observed under anodic polarization. (3) These oxides behaved like p-type semiconductros though no photocurrents were detected. (4) [Fe(CN)<SUB>6</SUB>]<SUP>3−⁄4−</SUP> served as a redox couple for all of these high-<I>T</I><SUB>c</SUB> oxides.
- 公益社団法人 日本化学会の論文
著者
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Itoh Kiminori
Institute Of Environmental Science And Technology Yokohama National University
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Fujishima Akira
Department Of Applied Chemistry Faculty Of Engineering The University Of Tokyo
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Ohkawa Kiyomi
Department Of Ophthalmology Wakayama Medical University
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