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Fabrication of Porous LSCF-SDC Carbonates Composite Cathode for Solid Oxide Fuel Cell (SOFC) Applications

机译:用于固体氧化物燃料电池(SOFC)的多孔LSCF-SDC碳酸盐复合阴极的制备

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Composite cathodes made of perovskite La_0.6Sr_0.4Co_0.2Fe_0.8O_3 (LSCF) and SDC carbonates (SDC-(Li/Na)_2CO_3) were investigated in relation to their structure, morphology, thermal expansion coefficient and porosity. As a first step, the LSCF powder was prepared by sol-gel technique. This was followed by the preparation of the LSCF-SDC carbonates composite cathode by mixing the LSCF with SDC-(Li/Na)_2CO_3 electrolyte via solid state reaction in various compositions, i.e. 30, 40 and 50 wt.%, namely 70LSCF-30SDC7030, 60LSCF-40SDC7030 and 50LSCF-50SDC7030, respectively. The powder mixtures were then calcined at 680°C. The resultant powder was fine with surface area of about 3.39-7.42 m2/g and particle size of 0.56-0.66um. The powder consists of two distinct phases, i.e. LSCF and SDC-(Li/Na)2CO3 as confirmed with x-ray diffraction. The microstructures were observed under scanning electron microscopy (SEM). Increasing the amount of the SDC-(Li/Na)_2CO_3 electrolyte in the composite cathode was found to bring the thermal expansion of the cathode closer to that of the electrolyte. The cathode pellets were later compacted at different pressures (27, 32 and 37 MPa) and sintered at 600°C. The optimum porosity (20.99-24.98%) was achieved for samples with SDC-(Li/Na)_2CO_3 content of 30-50% sintered at 600°C and cold pressed at 37 MPa.
机译:研究了钙钛矿型La_0.6Sr_0.4Co_0.2Fe_0.8O_3(LSCF)和SDC碳酸盐(SDC-(Li / Na)_2CO_3)复合阴极的结构,形态,热膨胀系数和孔隙率。第一步,通过溶胶-凝胶技术制备LSCF粉末。随后通过经由固态反应将LSCF与SDC-(Li / Na)_2CO_3电解质混合以各种组成即30、40和50重量%,即70LSCF-30SDC7030来制备LSCF-SDC碳酸盐复合阴极。 ,60LSCF-40SDC7030和50LSCF-50SDC7030。然后将粉末混合物在680℃下煅烧。所得粉末是细粉,表面积约为3.39-7.42m2 / g,粒度为0.56-0.66um。粉末由两个不同的相组成,即LSCF和SDC-(Li / Na)2 CO 3,这是通过X射线衍射证实的。在扫描电子显微镜(SEM)下观察了微观结构。发现增加复合阴极中SDC-(Li / Na)_2CO_3电解质的量可使阴极的热膨胀更接近于电解质的热膨胀。随后将阴极粒料在不同的压力(27、32和37 MPa)下压实,并在600°C下烧结。 SDC-(Li / Na)_2CO_3含量为30-50%的样品在600°C烧结并在37 MPa冷压下可获得最佳孔隙率(20.99-24.98%)。

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