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Nano-composite structural Ni-Sn alloy anodes for high performance and durability of direct methane-fueled SOFCs

机译:纳米复合结构Ni-Sn合金阳极,可提供直接甲烷燃烧的SOFC的高性能和耐用性

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摘要

Ni-based cermets have commonly been used as anode materials with good catalytic properties for hydrocarbon fuels. However, carbon deposition can occur due to the non-ideal electrochemical reaction of hydrocarbon fuel and the structural limitation resulting from the unsymmetrical Ni-based anode-supported single cells. This critical problem leads to loss of cell performance and poor long-term stability of solid oxide fuel cells (SOFCs). Our designed anode material with an extremely small amount (0.5 wt%) of Sn catalyst incorporated into the Ni and nano-composite structure was employed not only to prevent carbon deposition in oxygen deficient areas found for unsymmetrical cells, but also to increase the cell performance due to its excellent microstructure. The nano-composite Sn doped Ni-GDC cells showed a power density of 0.93 W cm(-2) with stable operation in dry methane at 650 degrees C.
机译:镍基金属陶瓷通常被用作阳极材料,对烃类燃料具有良好的催化性能。然而,由于碳氢燃料的不理想的电化学反应以及由于不对称的镍基阳极支撑的单电池导致的结构限制,会发生碳沉积。该严重问题导致电池性能下降,以及固体氧化物燃料电池(SOFC)的长期稳定性变差。我们设计的阳极材料将极少量(0.5 wt%)的Sn催化剂掺入Ni和纳米复合结构中,不仅用于防止碳在非对称电池的缺氧区域中沉积,而且还可以提高电池性能由于其优异的微观结构。纳米复合Sn掺杂的Ni-GDC电池在0.95 W cm(-2)的功率密度下在650摄氏度的干燥甲烷中具有稳定的操作性能。

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