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Determining the maximum lanthanum incorporation in the fluorite structure of La-doped ceria nanocubes for enhanced redox ability

机译:确定镧掺杂二氧化铈纳米立方体萤石结构中镧的最大掺入量,以提高氧化还原能力

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Ceria nanocubes have been doped with increasing amounts of lanthanum to enhance their redox ability. X-ray diffraction and transmission electron microscopy techniques provide a consistent picture indicating that there is an upper limit to the lanthanum that can be incorporated in the fluorite structure of ceria nanocubes, which is close to 7.5 mol% La. This limited loading is nevertheless able to produce a significant enhancement of the ceria redox ability as evidenced by use of X-ray absorption spectroscopy to determine the Ce ~(3+) /Ce ~(4+) ratio in samples submitted to a degassing treatment at room temperature.
机译:二氧化铈纳米立方体已经掺杂了越来越多的镧,以增强其氧化还原能力。 X射线衍射和透射电子显微镜技术可提供一致的图像,表明可掺入二氧化铈纳米立方体萤石结构中的镧存在上限,接近7.5 mol%La。但是这种有限的负载能力通过使用X射线吸收光谱法确定在室温下进行脱气处理的样品中的Ce〜(3 +)/ Ce〜(4+)比,可以证明二氧化铈的氧化还原能力显着增强。

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