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Nickel-Iron Anode Substrate for Smart Solid Oxide Fuel Cells with a Self-Protecting Function Against Reoxidation

机译:具有抗再氧化自保护功能的智能固体氧化物燃料电池的镍铁阳极基板

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摘要

Development of highly reliable solid oxide fuel cells (SOFCs) is strongly requested, and the introduction of a self-protecting function is an ideal approach to increase the reliability of SOFCs. A highly porous (>33%) Ni-Fe metal substrate, which has well-developed nanopores, is prepared by reduction of NiO-Fe_2O_3. In an oxidizing atmosphere, a thin layer of Fe_2O_3 forms on the surface of the substrate. As a result, the porous morphology changes at the surface and becomes denser. This morphological change occurs only at the surface and prevents oxidation of Ni in the bulk of the substrate. Furthermore, the surface morphology returns to its original state following reduction. Therefore, despite the fact that Ni is readily oxidized, Ni metal phase is sustained in the Ni-Fe bimetallic alloy substrate even after 480 h oxidation in air. The cell power density is also stably sustained after a few reduction-reoxidation cycles. Here, we report that Ni-Fe bimetal alloy substrate exhibits a self-protecting function against reoxidation of the substrate, which would otherwise lead to a permanent failure of the cell.
机译:强烈要求开发高度可靠的固体氧化物燃料电池(SOFC),并且引入自保护功能是提高SOFC可靠性的理想方法。通过还原NiO-Fe_2O_3,可以制备出具有良好纳米孔的高度多孔(> 33%)的Ni-Fe金属基底。在氧化气氛中,在衬底表面上形成Fe_2O_3薄层。结果,多孔形态在表面改变并变得更致密。这种形态变化仅发生在表面上,并防止了大部分基板中Ni的氧化。此外,表面形态在还原后返回其原始状态。因此,尽管镍容易被氧化,但即使在空气中氧化480小时后,镍金属相仍在镍铁双金属合金基底中得以维持。在几个还原-再氧化循环后,电池功率密度也得以稳定维持。在这里,我们报告说镍铁双金属合金基材表现出针对基材再氧化的自保护功能,否则会导致电池永久性失效。

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