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原子级精确的二氧化铈胶体纳米粒子。

Atomically-precise colloidal nanoparticles of cerium dioxide.

机构信息

Department of Chemistry, University of Florida, Gainesville, FL, 32611-7200, USA.

出版信息

Nat Commun. 2017 Nov 13;8(1):1445. doi: 10.1038/s41467-017-01672-4.

Abstract

Synthesis of truly monodisperse nanoparticles and their structural characterization to atomic precision are important challenges in nanoscience. Success has recently been achieved for metal nanoparticles, particularly Au, with diameters up to 3 nm, the size regime referred to as nanoclusters. In contrast, families of atomically precise metal oxide nanoparticles are currently lacking, but would have a major impact since metal oxides are of widespread importance for their magnetic, catalytic and other properties. One such material is colloidal CeO (ceria), whose applications include catalysis, new energy technologies, photochemistry, and medicine, among others. Here we report a family of atomically precise ceria nanoclusters with ultra-small dimensions up to 1.6 nm (100 core atoms). X-ray crystallography confirms they have the fluorite structure of bulk CeO, and identifies surface features, H binding sites, Ce locations, and O vacancies on (100) facets. Monodisperse ceria nanoclusters now permit investigation of their properties as a function of exact size, surface morphology, and Ce:Ce composition.

摘要

合成真正单分散的纳米粒子,并以原子精度对其结构进行表征,这是纳米科学的重要挑战。最近,在金属纳米粒子,特别是直径达 3nm 的金纳米粒子的尺寸范围内,取得了成功,被称为纳米团簇。相比之下,目前还缺乏原子精度的金属氧化物纳米粒子族,但这将产生重大影响,因为金属氧化物因其磁性、催化和其他特性而具有广泛的重要性。一种这样的材料是胶体 CeO(氧化铈),其应用包括催化、新能源技术、光化学和医学等。在这里,我们报告了一系列具有超小尺寸(高达1.6nm,100 个核心原子)的原子精度的氧化铈纳米团簇。X 射线晶体学证实它们具有体相 CeO 的萤石结构,并确定了(100)面的表面特征、H 结合位、Ce 位置和 O 空位。单分散氧化铈纳米团簇现在可以研究其作为精确尺寸、表面形态和 Ce:Ce 组成函数的性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc63/5682284/d9a6141f5aa2/41467_2017_1672_Fig1_HTML.jpg

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