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首页> 外文期刊>Nano letters >A Silicon-Based Nanothin Film Solid Oxide Fuel Cell Array with Edge Reinforced Support for Enhanced Thermal Mechanical Stability
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A Silicon-Based Nanothin Film Solid Oxide Fuel Cell Array with Edge Reinforced Support for Enhanced Thermal Mechanical Stability

机译:基于硅的纳米薄膜固态氧化物燃料电池阵列,具有边缘增强支撑,可增强热机械稳定性

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摘要

A silicon-based micro-solid oxide fuel cell (mu-SOFC) with electrolyte membrane array embedded in a thin silicon supporting membrane, featuring a unique edge reinforcement structure, was demonstrated by utilizing simple silicon micromachining processes. The square silicon supporting membrane, fabricated by combining deep reactive ion etching and through-wafer wet etching processes, has thicker edges and corners than the center portion of the membrane, which effectively improved the mechanical stability of the entire fuel cell array during cell fabrication and cell operation. The 20 mu m thick single crystalline silicon membrane supports a large number of 80 nm thick free-standing yttria-stabilized zirconia (YSZ) electrolytes. The fuel cell array was stably maintained at the open circuit voltage (OCV) of 1.04 V for more than 30 h of operation at 350 degrees C. A high peak power density of 317 mW/cm(2) was obtained at 400 degrees C. During a rigorous in situ thermal cycling between 150 and 400 degrees C at a fast cooling and heating rate of 25 degrees C/min, the OCV of the mu-SOFC recovered to its high value of 1.07 V without any drop caused by membrane failure, which justifies the superior thermal stability of this novel cell architecture.
机译:通过利用简单的硅微加工工艺,证明了具有嵌入独特支撑增强结构的薄硅支撑膜中的电解质膜阵列的硅基微固体氧化物燃料电池(mu-SOFC)。通过结合深反应离子刻蚀和晶圆湿法刻蚀工艺制造的方形硅支撑膜,其边缘和角落比膜的中心部分厚,有效地改善了整个燃料电池阵列在电池制造过程中的机械稳定性和稳定性。单元操作。 20微米厚的单晶硅膜支持大量80纳米厚的自立式氧化钇稳定氧化锆(YSZ)电解质。燃料电池阵列在350摄氏度下稳定运行30小时以上,稳定地保持在1.04 V的开路电压(OCV)下。在400摄氏度下获得317 mW / cm(2)的高峰值功率密度。在150至400摄氏度之间的严格原位热循环中,以25摄氏度/分钟的快速冷却和加热速率,mu-SOFC的OCV恢复至1.07 V的高值,而不会因膜破裂而引起任何下降,这证明了这种新型电池架构的出色热稳定性。

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