• 제목/요약/키워드: $LaBO_3$ perovskite

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신구조 금속지지체형 고체산화물 연료전지 (Study on metal-supported solid oxide fuel cells)

  • 이창보;배중면
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2007년도 춘계학술대회
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    • pp.129-132
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    • 2007
  • Advanced structure of metal-supported solid oxide fuel cells was devised to overcome sealing problem and mechanical instability in ceramic-supported solid oxide fuel cells. STS430 whose dimensions were 26mm diameter, 1mm thickness and 0.4mm channel width was used as metal support. Thin ceramic layer composed of anode(Ni/YSZ) and electrolyte(YSZ) was joined with STS430 metal support by using a cermet adhesive. $La_{0.8}Sr_{0.2}Co_{0.4}Mn_{0.6}O_{3}$ perovskite oxide was used as cathode material. It was noted that oxygen reduction reaction of cathode governed the overall cell performance from oxygen partial pressure dependance.

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철을 미량 치환한 La-Sr-Mn-O의 결정학적 및 자기적 특성 연구 (Crystal Structure and Magnetic Properties of Iron Doped La-Sr-Mn-O)

  • 안근영;심인보;김삼진;김철성
    • 한국자기학회지
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    • 제12권1호
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    • pp.14-19
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    • 2002
  • CMR 자성물질인 LSMO 페롭스카이트 망간산화물에 $^{57}$ Fe를 미량 치환한 L $a_{0.67}$S $r_{0.33}$M $n_{0.99}$$^{57}$ F $e_{0.01}$ $O_3$물질에 대하여 그 결정학적 및 자기적 특성을 x-선 회절 실험, 진동시료 자화율 측정 실험, 자기저항 실험, Mossbauer 분광 실험을 통하여 연구하였다. 물을 용매로 한 sol-gel법을 이용하여 단일상의 polycrystalline L $a_{0.67}$S $r_{0.33}$M $n_{0.99}$$^{57}$ F $e_{0.01}$ $O_3$분말시료를 합성하였으며, 결정구조는 격자 상수 $a_{0}$ =5.480 $\AA$, $\alpha$=60.259$^{\circ}$를 갖는 rhombohedral구조로 분석되었다. 상온에서의 magnetic moment 값은 60.15 emu/g임을 알 수 있었고 큐리온도( $T_{c}$)는 375 K로 결정하였다. Mossbauer 스펙트럼은 20-400 K 영역에서 측정되었으며, 온도증가에 따라 관측되는 비대칭적 선폭증가는 이방성 초미세자기장 요동 모델로 설명할 수 있었다. 이 때 이방성 초미세 자기장이 + $H_{0}$ 및 - $H_{0}$ 로 진동하는 시간 비율은 $P_{+}$= 0.80 및 $P_{-}$= 0.20으로 분석되었다. 이방성 초미세자기장 요동 진동수로부터 온도변화에 따른 이방성 에너지를 계산하였으며, 150 K에서 124.01 erg/$cm^3$로 최대값을 갖음을 알 수 있었다.다.었다.었다.다.었다.

SOFC 연결재용 Al이 도핑된 (La0.8Ca0.2)(Cr0.9Co0.1)O3(LCCC)계 세라믹스의 합성 및 치밀화 특성 (Synthesis and Densification Behavior of Al Doped (La0.8Ca0.2)(Cr0.9Co0.1)O3(LCCC) Ceramics for SOFC Interconnects)

  • 이호영;강보경;이호창;허영우;김정주;김재육;이준형
    • 한국전기전자재료학회논문지
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    • 제25권5호
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    • pp.392-397
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    • 2012
  • In the $(La_{0.8}Ca_{0.2})(Cr_{0.9}Co_{0.1})O_3$ (LCCC), which has been using as interconnector materials in SOFC, Al ions were substituted for Co because ionic radius of Al is similar to that of Co. Because of the almost identical ionic radius of Al and Co, the substitution was not thought to be affect the tolerance factor of LCCC, and the densification behavior, high temperature electrical conductivity and thermal expansion coefficient were examined as a function of Al concentration. In the cases of the x= 0 and x= 0.02 in $(La_{0.8}Ca_{0.2})(Cr_{0.9}Co_{0.1-x}Al_x)O_3$ (x= 0~0.1), the samples showed the relative densities above ${\geq}95%$ when those were sintered at ${\geq}1,350^{\circ}C$. In the case of the $x{\geq}0.06$ the sintered density deteriorated greatly at lower sintering temperatures. High temperature electrical conductivity of the samples decreased as the content of Al increased. Since the valence state of Al ion is unchangeable, while Cr or Co ions contribute to the electrical conduction by changing those valence states, Al substitution resulted in the decreased electrical conductivity. Al doping of LCCC was an effective way of decreasing the thermal expansion coefficient (TEC).

금속지지체형 고체산화물 연료전지의 단전지 특성 및 전산해석 (Single cell property and numerical analysis of metal-supported solid oxide fuel cell)

  • 이창보;배중면
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회B
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    • pp.2222-2227
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    • 2007
  • Newly structured metal-supported solid oxide fuel cell was fabricated and characterized by impedance analysis and galvanodynamic experiment. Using a cermet adhesive, thin ceramic layer composed of anode(Ni/YSZ) and electrolyte(YSZ) was joined with STS430 metal support of which flow channel was fabricated. $La_{0.8}Sr_{0.2}Co_{0.4}Mn_{0.6}O_3$ perovskite oxide was used as cathode material. Single cell performance was increased and saturated at operating time to 300hours at 800$^{\circ}C$ because of cathode sintering effect. The sintering effect was reinvestigated by half cell test and exchange current density was measured as 0.005A/$cm^2$. Maximum power density of the cell was 0.09W/$cm^2$ at 800$^{\circ}C$. Numerical analysis was carried out to classify main factors influencing the single cell performances. Compared to experimental IV curve, simulated curve based on experimental parameters such as exchange current density was in good agreement.

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