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Contraction, cation oxidation state and size effects in cerium oxide nanoparticles

机译:氧化铈纳米粒子中的收缩,阳离子氧化状态和尺寸效应

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摘要

An accurate description of the structural and chemical modifications of cerium oxide nanoparticles (NPs) is mandatory for understanding their functionality in applications. In this work we investigate the relation between local atomic structure, oxidation state, defectivity and size in cerium oxide NPs with variable diameter below 10 nm, using x-ray absorption fine structure analysis in the near and extended energy range. The NPs are prepared by physical methods under controlled conditions and analyzed in morphology and crystalline quality by high resolution transmission electron microscopy. We resolve here an important question on the local structure of cerium oxide NPs: we demonstrate a progressive contraction in the Ce-O interatomic distance with decreasing NP diameter and we relate the observed effect to the reduced dimensionality. The contraction is not significantly modified by inducing a 4%-6% higher Ce3+ concentration through thermal annealing in high vacuum. The consequences of the observed average cation-anion distance contraction on the properties of the NPs are discussed.
机译:对氧化铈纳米粒子(NPS)的结构和化学改性的准确描述是强制性的,用于理解其在应用中的功能。在这项工作中,我们在近10nm低于10nm的可变直径低于10nm的氧化铈nps之间的局部原子结构,氧化状态,缺陷和尺寸之间的关系,在近乎扩展的能量范围内使用X射线吸收细结构分析。 NPS由受控条件下的物理方法制备,并通过高分辨率透射电子显微镜分析形态和结晶品质。我们在这里解决了关于氧化铈NPS的局部结构的重要问题:我们在CE-O型距离中展示了逐渐降低的NP直径,并且我们将观察到的效果与降低的维数相关。通过在高真空中通过热退火诱导4%-6%的CE3 +浓度,不能显着改变收缩。讨论了观察到的平均阳离子阴离子距离收缩对NPS性质的后果。

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