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INVESTIGATION OF MIXED CONDUCTING CATHODE FOR METAL-SUPPORTED SOFC

机译:用于金属支撑的SOFC的混合导电阴极的研究

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摘要

Metal-supported solid oxide fuel cell (SOFC) is a promising concept in solving serious problems associated with current SOFC design. Metal-supported SOFC have many advantages as compared to current SOFC such as easy sealing, mechanical durability and cost reduction. However, they have also disadvantages such as diffusion of metallic components between metal-substrate and anode, corrosion of metal at high temperatures. Due to the cell fabrication and oxidation of metal substrate, unsintered cathode with high electrochemical activity at operating temperature is essential in order to obtain the better performance in the metal-supported SOFC. For this purpose, mixed conducting cathode materials for metal-supported SOFC were investigated by using SEM, XRD, EIS and particle size distribution (PSD) measurement. From the results of half cell test using 8YSZ electrolyte and SEM images, it was observed that (Ba,Sr)(Co,Fe)O_(3_δ) electrode showed the better electrochemical performance and sinterability at 1073 K than other conventional cathode material. It was also concluded from the long-term test that the buffer layer between electrolyte and cathode is necessary in order to eliminate the chemical reaction between the 8YSZ electrolyte and the cathode.
机译:金属支撑的固体氧化物燃料电池(SOFC)是解决与当前SOFC设计相关的严重问题的有前途的概念。与目前的SOFC相比,金属支撑的SOFC具有许多优势,例如易于密封,机械耐用性和降低成本。但是,它们也具有诸如金属组分在金属基底和阳极之间扩散,高温下金属腐蚀的缺点。由于电池的制造和金属基板的氧化,为了在金属负载的SOFC中获得更好的性能,在工作温度下具有高电化学活性的未烧结阴极至关重要。为此,通过SEM,XRD,EIS和粒度分布(PSD)测量研究了用于金属负载的SOFC的混合导电阴极材料。从使用8YSZ电解质的半电池测试结果和SEM图像中可以看出,与其他常规正极材料相比,(Ba,Sr)(Co,Fe)O_(3_δ)电极在1073 K时表现出更好的电化学性能和可烧结性。从长期测试中还得出结论,电解质和阴极之间的缓冲层是必需的,以便消除8YSZ电解质和阴极之间的化学反应。

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