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Synthesis and properties of La_(0.7)Sr_(0.3)MnO_3 cathode by gel combustion

机译:La_(0.7)Sr_(0.3)MnO_3阴极的凝胶燃烧合成及性能

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La_(0.7)Sr_(0.3)MnO_3, a good candidate material for a cathode of solid oxide fuel cells, was synthesized by gel combustion method to obtain fine grain size and good sinterability. Powders with the perovskite structure, rather than the amorphous one, were directly obtained after self-propagating combustion of dried gels. The influences of pH and content of citric acid on the stability of the sol system, the combustion process and the phase formation were focused on by this study. The contributions of La~(3+), Sr~(2+) and Mn~(2+) and metal complexes at different pH values were calculated to determine the suitable pH value for the sol system. It was found from experiments that the sol was stable and clear at pH below 3, while white precipitates appeared at pH above 3. The combustion extent was improved with increasing pH and with decreasing the content of citric acid. Almost single phase of perovskite was found at low ratio of citric acid to nitrates (denote this ratio as phi). However a small amount of second phase occurred with increasing phi to above 1. A rational density of the sample prepared via high phi value (1.5) was obtained after sintering at 1300 deg C for 2 h. The electrical conductivity of samples was measured by a DC four-probe method. It was demonstrated that conductivity enhanced with increasing phi. The maximum conductivity was 150 S/cm for the above-mentioned sample. It was revealed that the optimal phi was 1.5 when considering both phase formation and sinterability of the powder.
机译:通过凝胶燃烧法合成了La_(0.7)Sr_(0.3)MnO_3,该氧化物为固体氧化物燃料电池阴极的良好候选材料,从而获得了细晶粒尺寸和良好的烧结性。在干燥凝胶自蔓延燃烧后,直接获得具有钙钛矿结构而不是无定形结构的粉末。重点研究了pH和柠檬酸含量对溶胶体系稳定性,燃烧过程和相形成的影响。计算了La〜(3 +),Sr〜(2 +),Mn〜(2+)和金属配合物在不同pH值下的贡献,确定了适合溶胶体系的pH值。从实验中发现,溶胶在pH低于3时是稳定且透明的,而在pH高于3时出现白色沉淀。燃烧程度随pH的增加和柠檬酸含量的降低而改善。柠檬酸与硝酸盐的比率低(以phi表示),发现钙钛矿几乎为单相。然而,少量的第二相随着phi的增加而增加到1以上。在1300℃烧结2 h后,获得了通过高phi值(1.5)制备的样品的合理密度。通过DC四探针法测量样品的电导率。已证明电导率随phi的增加而增强。对于上述样品,最大电导率为150S / cm。结果表明,当同时考虑相的形成和粉末的可烧结性时,最佳phi为1.5。

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