Thermoelectric properties of several oxides were investigated. Al₂O₃-, TiO₂- or ZrO₂-doped ZnO showed large power factor over the wide temperature range. Fe₂O₂ showed large power factor by doping of TiO₂. BaO-doped RuO₂, BaRuO₃ and C...
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https://www.riss.kr/link?id=A3328746
Tsuchida, Kiyoshi (Dept. of Chemical Sciecne and Technology, Faculty of Engineering, Kyushu Univ.) ; Tanaka, Yasunori (Dept. of Chemical Science and Engineering, Ariake National College of Technology) ; Ifuku, Toshihiro (Dept. of Chemical Sciecne and Technology, Faculty of Engineering, Kyushu Univ.) ; Nakao, Yoshihiro (Dept. of Chemical Sciecne and Technology, Faculty of Engineering, Kyushu Univ.) ; Matsuda, Takanori (Dept. of Chemical Sciecne and Technology, Faculty of Engineering, Kyushu Univ.) ; Nagashima, Satoko (Dept. of Chemical Sciecne and Technology, Faculty of Engineering, Kyushu Univ.) ; Maeda, Hideaki (Dept. of Chemical Sciecne and Technology, Faculty of Engineering, Kyushu Univ.) ; Kato, Akio (Dept. of Chemical Sciecne and Technology, Faculty of Engineering, Kyushu Univ.)
1996
English
570.000
SCIE,SCOPUS,KCI등재
학술저널
478-481(4쪽)
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다운로드다국어 초록 (Multilingual Abstract)
Thermoelectric properties of several oxides were investigated. Al₂O₃-, TiO₂- or ZrO₂-doped ZnO showed large power factor over the wide temperature range. Fe₂O₂ showed large power factor by doping of TiO₂. BaO-doped RuO₂, BaRuO₃ and C...
Thermoelectric properties of several oxides were investigated. Al₂O₃-, TiO₂- or ZrO₂-doped ZnO showed large power factor over the wide temperature range. Fe₂O₂ showed large power factor by doping of TiO₂. BaO-doped RuO₂, BaRuO₃ and CaRuO₃ showed large power factor at high temperature. Improvement of electrical conductivity by doping was effective to increase power factor in these oxide materials.
CATALYTIC AND THERMAL DEGRADATION OF KOREAN FOOD SLUDGE
TERNARY LIQUID - LIQUID PHASE BEHAVIOR BY DECORATED - UNIQUAC
REMOVAL OF METAL IONS BY ULTRAFILTRATION OF A MICELLAR SOLUTION CONTAINING ANIONIC SURFACTANT
CONTINUOUS ETHANOL PRODUCTION FROM WOOD HYDROLYSATE BY CHEMOSTAT AND TOTAL CELL RETENTION CULTURE