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Strontium Titanate-based Composite Anodes for Solid Oxide Fuel Cells

机译:用于固体氧化物燃料电池的钛酸锶基复合阳极

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摘要

Surfactant-assisted infiltration of Gd-doped ceria (CGO) in Nb-doped SrTiO3 (STN) was investigated as a potential fuel electrode for solid oxide fuel cells (SOFC). An electronically conductive backbone structure of STN was first fabricated at high temperatures and then combined with the mixed conducting and electrochemically active nano-sized CGO phase at low temperatures. Symmetrical cell measurements at open circuit voltage (OCV), showed that the electrochemical activity was maintained or even improved compared to Ni/YSZ fuel electrodes. The novel electrode had an electrode polarization resistance of 0.12 Omegacm2 and 0.44 Omegacm2 in humidified H2 at 850 ºC and 650 ºC, respectively. In addition, the ceramic composite electrode was shown to be redox stable. The electrode was actually activated with redox cycles at 650 ºC. The ceramic electrode structure thus presents a potential solution to overcome some of the major limitations of the current Ni-YSZ cermet SOFC anodes.
机译:研究了表面活性剂辅助掺Nb的SrTiO3(STN)中掺杂Gd的二氧化铈(CGO)作为固体氧化物燃料电池(SOFC)的潜在燃料电极。首先在高温下制备STN的电子主链结构,然后在低温下将其与导电和电化学活性纳米CGO相混合。在开路电压(OCV)下的对称电池测量表明,与Ni / YSZ燃料电极相比,电化学活性得以保持或什至得到改善。新型电极在850°C和650°C的湿化H2中的电极极化电阻分别为0.12 Omegacm2和0.44 Omegacm2。另外,显示陶瓷复合电极是氧化还原稳定的。电极实际上是在650ºC的氧化还原循环下激活的。因此,陶瓷电极结构提供了一种潜在的解决方案,可以克服当前Ni-YSZ金属陶瓷SOFC阳极的一些主要限制。

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