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首页> 外文期刊>Materials for Renewable and Sustainable Energy >Strontium and iron-doped barium cobaltite prepared by solution combustion synthesis: exploring a mixed-fuel approach for tailored intermediate temperature solid oxide fuel cell cathode materials
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Strontium and iron-doped barium cobaltite prepared by solution combustion synthesis: exploring a mixed-fuel approach for tailored intermediate temperature solid oxide fuel cell cathode materials

机译:固溶燃烧合成制备锶铁掺杂钡钴矿:探索混合燃料方法以量身定制中温固体氧化物燃料电池正极材料

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摘要

Ba0.5Sr0.5Co0.8Fe0.2O3–δ (BSCF) powders were prepared by solution combustion synthesis using single and double fuels. The effect of the fuel mixture on the main properties of this well-known solid oxide fuel cell cathode material with high oxygen ion and electronic conduction was investigated in detail. Results showed that the fuel mixture significantly affected the area-specific resistance of the BSCF cathode materials, by controlling the oxygen deficiency and stabilizing the Co2+ oxidation state. It was demonstrated that high fuel-to-metal cations molar ratios and high reducing power of the combustion fuel mixture are mainly responsible for the decreasing of the area-specific resistance of BSCF cathode materials. Moreover, a new metastable monoclinic phase with Ba0.5Sr0.5CO3 composition was discovered in the as-burned BSCF powders, enlarging the existing information on the BSCF phase formation mechanism.
机译:Ba0.5Sr0.5Co0.8Fe0.2O3-δ(BSCF)粉末是采用单燃料和双燃料通过固溶燃烧合成制备的。详细研究了燃料混合物对这种众所周知的具有高氧离子和电子传导性的固体氧化物燃料电池正极材料的主要性能的影响。结果表明,该燃料混合物通过控制缺氧和稳定Co2 +氧化态,显着影响BSCF正极材料的比电阻。结果表明,燃料与金属阳离子的高摩尔比和燃烧混合物的高还原能力是造成BSCF阴极材料比电阻降低的主要原因。此外,在烧成的BSCF粉末中发现了一种新的具有Ba0.5Sr0.5CO3组成的亚稳态单斜晶相,扩大了有关BSCF相形成机理的现有信息。

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