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Solid oxide fuel cell components tuned by atomic layer deposition

机译:通过原子层沉积调整的固体氧化物燃料电池组件

摘要

A reduced cost solid oxide fuel cell having enhanced surface exchange rates and diffusivity of oxide ions is provided. The invention cell includes a first porous electrode and a second porous electrode, where the porous electrodes have a layer of electronically conductive porous non-precious metal, and the porous non-precious metal layer is a gas diffusion layer. The porous electrodes further include at least one atomic layer of catalytic metal deposited on the non-precious metal layer, and an electrolyte layer disposed between the first porous electrode and the second porous electrode. The electrolyte layer includes a first dense ion-conductive doped oxide film layer, and a second dense ion-conductive doped oxide film layer deposited on the first doped oxide film layer, where the catalytic metal layer on the conductive porous non-metal layer enhances surface exchange rates and diffusivity of the oxide ions, thus the material costs of the fuel cell are reduced.
机译:提供了具有降低的表面交换速率和氧化物离子扩散性的低成本固体氧化物燃料电池。本发明的电池包括第一多孔电极和第二多孔电极,其中所述多孔电极具有导电的多孔非贵金属层,并且所述多孔非贵金属层是气体扩散层。多孔电极还包括沉积在非贵金属层上的至少一个催化金属原子层,以及设置在第一多孔电极和第二多孔电极之间的电解质层。电解质层包括第一致密离子导电掺杂氧化物膜层和沉积在第一掺杂氧化膜层上的第二致密离子导电氧化物膜层,其中导电多孔非金属层上的催化金属层增强了表面交换速率和氧化物离子的扩散率,因此降低了燃料电池的材料成本。

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