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저자명
안용태,지미정,박선민,신상호,황해진,최병현,An. Yong-Tae,Ji. Mi-Jung,Park. Sun-Min,Shin. Sang-Ho,Hwang. Hae-Jin,Choi. Byung-Hyun
간행물명
한국재료학회지
권/호정보
2013년|23권 3호|pp.206-210 (5 pages)
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한국재료학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

In the segmented-in-series solid-oxide fuel cells (SIS-SOFCs), fabrication techniques which use decalcomania paper have many advantages, i.e., an increased active area of the electrode; better interfacial adhesion property between the anode, electrolyte and cathode; and improved layer thickness uniformity. In this work, a cell-stack was fabricated on porous ceramic flattened tube supports using decalcomania paper, which consists of an anode, electrolyte, and a cathode. The anode layer was $40{mu}m$ thick, and was porous. The electrolyte layers exhibited a uniform thickness of about $20{mu}m$ with a dense structure. Interfacial adhesion was improved due to the dense structure. The cathode layers was $30{mu}m$ thick with porous structure, good adhesion to the electrolyte. The ohmic resistance levels at 800, 750 and $700^{circ}C$ were measured, showing values of 1.49, 1.58 and $1.65{Omega}{cdot}cm^2$, respectively. The polarization resistances at 800, 750 and $700^{circ}C$ were measured to be 1.63, 2.61 and $4.17cm^2$, respectively. These lower resistance values originated from the excellent interfacial adhesion between the anode, electrolyte and cathode. In a two-cell-stack SOFC, open-circuit voltages(OCVs) of 1.915, 1.942 and 1.957 V and maximum power densities(MPD) of 289.9, 276.1 and $220.4mW/cm^2$ were measured at 800, 750 and $700^{circ}C$, respectively. The proposed fabrication technique using decalcomania paper was shown to be feasible for the easy fabrication of segmented-in-series flattened tube SOFCs.