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Enhanced performance of symmetrical solid oxide fuel cells using a doped ceria buffer layer

机译:使用掺杂的二氧化铈缓冲层增强对称固体氧化物燃料电池的性能

摘要

Enhanced performance of symmetrical solid oxide fuel cell (SSOFC) is reported by using a doped ceria buffer layer, which can solve the issues during the operation of traditional solid oxide fuel cells, such as carbon deposition and sulfur poisoning. In this work, cobalt-free perovskite oxide La0.8Sr0.2FeO3-δ (LSF) is applied as a novel stable electrode material for symmetrical solid oxide fuel cell. The electrical conductivities of LSF are 141.1 Scm-1 and 0.138 Scm-1 in air and humidified H2 (3% H2O) at 800 °C, respectively. Gadolinium doped ceria (GDC) buffer layer is fabricated by screen printing onto the YSZ electrolyte, which dramatically enhances the electrochemical performance by more than 90 percent at 700 °C. The improvement of SSOFC performance is attributed to the elimination of reactivity and the optimization of interface between YSZ electrolyte and LSF electrode. These results demonstrate that the doped ceria buffer layer provides a highly repeatable route for further improving the performance of YSZ-based SSOFC, with potentially important implications for developing cost-effective SSOFCs with huge application opportunities.
机译:据报道,通过使用掺杂的二氧化铈缓冲层,对称固体氧化物燃料电池(SSOFC)的性能得到了提高,它可以解决传统固体氧化物燃料电池运行过程中的问题,例如碳沉积和硫中毒。在这项工作中,无钴钙钛矿氧化物La0.8Sr0.2FeO3-δ(LSF)被用作新型稳定的对称固体氧化物燃料电池的电极材料。 LSF在800°C的空气和湿H2(3%H2O)中的电导率分别为141.1 Scm-1和0.138 Scm-1。 screen掺杂二氧化铈(GDC)缓冲层是通过丝网印刷在YSZ电解质上制成的,在700°C时,其电化学性能显着提高了90%以上。 SSOFC性能的提高归因于消除了反应性以及优化了YSZ电解质与LSF电极之间的界面。这些结果表明,掺杂的二氧化铈缓冲层为进一步提高基于YSZ的SSOFC的性能提供了高度可重复的途径,对于开发具有巨大应用机会的具有成本效益的SSOFC可能具有重要的意义。

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