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Novel thin film solid-oxide fuel cell for microscale energy conversion

机译:用于微型能量转换的新型薄膜固体氧化物燃料电池

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Abstract: A novel approach for the fabrication and assembly of a solid oxide fuel cell system is described which enables effective scaling of the fuel delivery, manifold, and fuel cell stack components for applications in miniature and microscale energy conversion. Scaling towards miniaturization is accomplished by utilizing thin film deposition combined with novel micromachining approaches which allow manifold channels and fuel delivery system to be formed within the substrate which the thin film fuel cell stack is fabricated on, thereby circumventing the need for bulky manifold components which are not directly scalable. Results demonstrating the generation of electrical current in the temperature range of 200 - 400 degrees Celsius for a thin film solid oxide fuel cell stack fabricated on a silicon wafer will be presented. !11
机译:摘要:描述了一种用于制造和组装固体氧化物燃料电池系统的新方法,其能够实现燃料输送,歧管和燃料电池堆部件的有效缩放,以便在微型和微观能量转换中的应用。通过利用薄膜沉积与新的微机械线方法结合的薄膜沉积来实现缩放,该方法允许歧管通道和燃料输送系统在薄膜燃料电池堆被制造在基板内,从而避免需要庞大的歧管部件不直接可扩展。结果表明,将呈现在200 - 400摄氏度的温度范围内产生电流的产生薄膜固体氧化物燃料电池堆的薄膜固体氧化物燃料电池堆。 !11

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