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In situ Reduction and Oxidation of Nickel from Solid Oxide Fuel Cells in a Transmission Electron Microscope

机译:原位氧化物燃料电池中镍在透射电子显微镜中的原位还原和氧化

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摘要

Environmental transmission electron microscopy was used to characterize in situ the reduction and oxidation of nickel from a Ni/YSZ solid oxide fuel cell anode support between 300-500{degree sign}C. The reduction is done under low hydrogen pressure. The reduction initiates at the NiO/YSZ interface, then moves to the center of the NiO grain. At higher temperature the reduction occurs also at the free NiO surface and the NiO/NiO grain boundaries. The growth of Ni is epitaxial on its oxide. Due to high volume decrease, nanopores are formed during reduction. During oxidation, oxide nanocrystallites are formed on the nickel surface. The crystallites fill up the nickel porosity and create an inhomogeneous structure with remaining voids. This change in structure causes the nickel oxide to expand during a RedOx cycle.
机译:使用环境透射电子显微镜来原位表征在300-500℃之间从Ni / YSZ固体氧化物燃料电池阳极载体中镍的还原和氧化。还原是在低氢气压力下完成的。还原始于NiO / YSZ界面,然后移至NiO晶粒的中心。在较高温度下,还原也发生在自由NiO表面和NiO / NiO晶界上。 Ni的生长在其氧化物上是外延的。由于大量减少,在还原过程中形成了纳米孔。在氧化过程中,氧化物纳米晶体形成在镍表面上。微晶填充了镍的孔隙度,并形成了具有剩余空隙的不均匀结构。这种结构变化导致氧化镍在RedOx循环中膨胀。

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