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Characterization and Performance of Proton Conducting Solid Oxide Fuel Cells Manufactured Using Reactive Spray Deposition Technology

机译:用反应喷涂技术制造的质子传导固体氧化物燃料电池的表征及性能

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Proton conducting solid oxide fuel cells (SOFCs) have received attention as a possible alternative to traditional oxygen anion conducting SOFCs. The reason is existing proton conducting perovskites display ionic conductivity similar to yttria-stabilized zirconia at lower temperatures. Lower operating temperatures alleviate durability issues and open the door for the use of low cost stainless steels in cell construction. This study examines the use of reactive spray deposition technology (RSDT) as a means of producing a low cost, metal supported proton conducting SOFC by directly depositing layer after layer onto a metal substrate and with a no need for additional sintering steps. The deposited materials are characterized using SEM, STEM, and XRD techniques.
机译:传导固体氧化物燃料电池(SOFC)的质子已经注意到传统氧阴离子导电SOFC的可能替代方案。原因是现有的质子传导钙钛矿在较低温度下显示与ytTra稳定的氧化锆类似的离子电导率。较低的工作温度减轻了耐用性问题,并打开了在细胞构造中使用低成本不锈钢的门。该研究检查了使用反应性喷雾沉积技术(RSDT)作为产生低成本的方法,通过将层后直接沉积层沉积在金属基材上并不需要额外的烧结步骤,所述金属支撑的质子传导SOFC。沉积材料的特征在于使用SEM,阀杆和XRD技术。

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