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Preparation and Property of LSGM-Carbonate Composite Electrolyte for Low Temperature Solid Oxide Fuel Cell

机译:低温固体氧化物燃料电池LSGM碳酸盐复合电解质的制备及性能

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The LSGM-carbonate composite electrolyte is a new type of medium and low temperature SOFC electrolyte material, which has great application potential. In this paper, the molten salt infiltration method was used to prepare the LSGM-carbonate composite electrolyte. The results of SEM test proved that the molten salt infiltration method was more appropriate in preparing the LSGM-carbonate composite electrolyte comparing with direct mixing method. The influence of the type and content of pore forming agent was investigated. The result showed that the polymethyl methacrylate (PMMA) had an excellent pore forming performance and could create interconnected pore structures successfully in LSGM matrix. The XRD result indicated that the LSGM-carbonate composite electrolyte showed almost a single LSGM phase and the carbonate remained glass state. Four terminal method was used to measure the conductivity. The result showed that the conductivity of the LSGM-carbonate composite electrolytes was increased by one order of magnitude compared with pure LSGM. The conductivity of LSGM-carbonate composite electrolytes increased firstly and then decreased with the increasing of PMMA. The LSGM-carbonate composite electrolyte prepared by 25 wt.% PMMA addition has the highest conductivity during the whole range of test temperature and reached 0.3 S.cm~(-1) at 600°C.
机译:LSGM-碳酸盐复合电解质是一种新型的培养基和低温SOFC电解质材料,具有很大的应用潜力。本文采用熔盐渗透方法制备LSGM-碳酸盐复合电解质。 SEM检测结果证明,熔盐渗透方法更适合于制备与直接混合方法的LSGM-碳酸盐复合电解质。研究了孔形成剂的类型和含量的影响。结果表明,聚甲基丙烯酸甲酯(PMMA)具有优异的孔形成性能,可以在LSGM基质中成功产生相互连接的孔结构。 XRD结果表明,LSGM-碳酸盐复合电解质显示出几乎单一的LSGM相,碳酸盐仍然是玻璃状态。使用四个终端方法测量导电性。结果表明,与纯LSGM相比,LSGM-碳酸盐复合电解质的电导率增加了一种数量级。 LSGM-碳酸盐复合电解质的电导率首先增加,然后随着PMMA的增加而降低。通过25重量%的碳酸盐酯复合电解质25重量%。%PMMA添加在整个测试温度范围内具有最高的导电性,在600℃下达到0.3℃〜(-1)。

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