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Favored local structures in amorphous colloidal packings measured by microbeam X-ray diffraction

机译:通过微束X射线衍射测量无定形胶体填料中的有利局部结构

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摘要

Local structure and symmetry are keys to understanding how a material is formed and the properties it subsequently exhibits. This applies to both crystals and amorphous and glassy materials. In the case of amorphous materials, strong links between processing and history, structure and properties have yet to be made because measuring amorphous structure remains a significant challenge. Here, we demonstrate a method to quantify proportions of the bond-orientational order of nearest neighbor clusters [Steinhardt, et al. (1983) Phys Rev B 28:784–805] in colloidal packings by statistically analyzing the angular correlations in an ensemble of scanning transmission microbeam small-angle X-ray scattering (μSAXS) patterns. We show that local order can be modulated by tuning the potential between monodisperse, spherical colloidal silica particles using salt and surfactant additives and that more pronounced order is obtained by centrifugation than sedimentation. The order in the centrifuged glasses reflects the ground state order in the dispersion at lower packing fractions. This diffraction-based method can be applied to amorphous systems across decades in length scale to connect structure to behavior in disordered systems with a range of particle interactions.
机译:局部结构和对称性是了解材料形成方式及其随后表现出的特性的关键。这适用于晶体以及非晶态和玻璃态材料。对于无定形材料,由于测量无定形结构仍然是一项重大挑战,因此尚需在加工与历史,结构和性能之间建立牢固的联系。在这里,我们展示了一种量化最邻近簇的键正向顺序比例的方法[Steinhardt等。 (1983)Phys Rev B 28:784–805]通过统计分析扫描透射微束小角度X射线散射(μSAXS)模式的集合中的角度相关性来分析胶体填料。我们表明,可以通过使用盐和表面活性剂添加剂调节单分散球形胶体二氧化硅颗粒之间的电势来调节局部有序,并且通过离心分离获得的沉淀比通过沉淀获得的更明显。离心玻璃中的顺序反映了较低填充分数下分散体中的基态顺序。这种基于衍射的方法可应用于数十年规模的无定形系统中,以将结构与行为联系起来,并具有一系列粒子相互作用的无序系统。

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