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Structural diversity in iron oxide nanoparticle assemblies as directed by particle morphology and orientation

机译:氧化铁纳米粒子组件中的结构多样性,受粒子形态和取向的控制

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摘要

The mesostructure of ordered arrays of anisotropic nanoparticles is controlled by a combination of packing constraints and interparticle interactions, two factors that are strongly dependent on the particle morphology. We have investigated how the degree of truncation of iron oxide nanocubes controls the mesostructure and particle orientation in drop cast mesocrystal arrays. The combination of grazing incidence small-angle X-ray scattering and scanning electron microscopy shows that mesocrystals of highly truncated cubic nanoparticles assemble in an fcc-type mesostructure, similar to arrays formed by iron oxide nanospheres, but with a significantly reduced packing density and displaying two different growth orientations. Strong satellite reflections in the GISAXS pattern indicate a commensurate mesoscopic superstructure that is related to stacking faults in mesocrystals of the anisotropic nanocubes. Our results show how subtle variation in shape anisotropy can induce oriented arrangements of nanoparticles of different structures and also create mesoscopic superstructures of larger periodicity.
机译:各向异性纳米粒子有序阵列的介观结构是由堆积约束和粒子间相互作用的组合控制的,这两个因素强烈取决于粒子的形态。我们已经研究了氧化铁纳米立方体的截断程度如何控制滴铸中晶阵列中的介观结构和粒子取向。掠入射小角X射线散射和扫描电子显微镜的结合表明,高度截断的立方纳米粒子的介晶以fcc型介观结构组装,类似于氧化铁纳米球形成的阵列,但堆积密度和显示显着降低两种不同的增长方向。 GISAXS模式中强烈的卫星反射表明相应的介观超结构与各向异性纳米立方体的介晶中的堆垛层错有关。我们的结果表明,形状各向异性的微妙变化如何诱导不同结构的纳米粒子定向排列,并且还创建具有较大周期性的介观超结构。

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