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圆形纳米立方体自组装成三维介晶时具有很强的尺寸选择性。

Strong size selectivity in the self-assembly of rounded nanocubes into 3D mesocrystals.

作者信息

Josten Elisabeth, Angst Manuel, Glavic Artur, Zakalek Paul, Rücker Ulrich, Seeck Oliver H, Kovács András, Wetterskog Erik, Kentzinger Emmanuel, Dunin-Borkowski Rafal E, Bergström Lennart, Brückel Thomas

机构信息

Jülich Centre for Neutron Science (JCNS) and Peter Grünberg Institute (PGI), JARA-FIT, Forschungszentrum Jülich GmbH, 52425 Jülich, Germany.

出版信息

Nanoscale Horiz. 2020 Jul 1;5(7):1065-1072. doi: 10.1039/d0nh00117a. Epub 2020 Jun 15.

Abstract

The self-assembly of nanoparticles into highly ordered crystals is largely influenced by variations in the size and shape of the constituent particles, with crystallization generally not observed if their polydispersity is too large. Here, we report on size selectivity in the self-assembly of rounded cubic maghemite nanoparticles into three-dimensional mesocrystals. Different X-ray scattering techniques are used to study and compare a nanoparticle dispersion that is used later for self-assembly, an ensemble of mesocrystals grown on a substrate, as well as an individual mesocrystal. The individual μm-sized mesocrystal is isolated using a focused-ion-beam-based technique and investigated by the diffraction of a micro-focused X-ray beam. Structural analysis reveals that individual mesocrystals have a drastically smaller size dispersity of nanoparticles than that in the initial dispersion, implying very strong size selectivity during self-assembly. The small size dispersity of the nanoparticles within individual mesocrystals is accompanied by a very narrow lattice parameter distribution. In contrast, the lattice parameter distribution within all mesocrystals of an ensemble is about four times wider than that of individual mesocrystals, indicating significant size fractionalization between mesocrystals during self-assembly. The small size dispersity within each mesocrystal has important implications for their physical properties.

摘要

纳米颗粒自组装成高度有序的晶体在很大程度上受到组成颗粒尺寸和形状变化的影响,如果其多分散性过大,通常不会观察到结晶现象。在此,我们报道了圆形立方晶型磁赤铁矿纳米颗粒自组装成三维介晶过程中的尺寸选择性。使用不同的X射线散射技术来研究和比较一种稍后用于自组装的纳米颗粒分散体、在基底上生长的介晶集合体以及单个介晶。使用基于聚焦离子束的技术分离出单个微米级介晶,并通过微聚焦X射线束的衍射对其进行研究。结构分析表明,单个介晶中纳米颗粒的尺寸分散性比初始分散体中的要小得多,这意味着自组装过程中具有很强的尺寸选择性。单个介晶内纳米颗粒的小尺寸分散性伴随着非常窄的晶格参数分布。相比之下,一组介晶中所有介晶的晶格参数分布比单个介晶的宽约四倍,这表明自组装过程中介晶之间存在显著的尺寸分级。每个介晶内的小尺寸分散性对其物理性质具有重要意义。

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