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Particle-scale structure in frozen colloidal suspensions from small-angle x-ray scattering

机译:小角度X射线散射在冷冻胶体悬浮液中的颗粒尺度结构

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摘要

During directional solidification of the solvent in a colloidal suspension, the colloidal particles segregate from the growing solid, forming high-particle-density regions with structure on a hierarchy of length scales ranging from that of the particle-scale packing to the large-scale spacing between these regions. Previous work has concentrated mostly on the medium- to large-length scale structure, as it is the most accessible and thought to be more technologically relevant. However, the packing of the colloids at the particle scale is an important component not only in theoretical descriptions of the segregation process, but also to the utility of freeze-cast materials for new applications. Here we present the results of experiments in which we investigated this structure across a wide range of length scales using a combination of small-angle x-ray scattering and direct optical imaging. As expected, during freezing the particles were concentrated into regions between ice dendrites forming a microscopic pattern of high- and low-particle-density regions. X-ray scattering indicates that the particles in the high-density regions were so closely packed as to be touching. However, the arrangement of the particles does not conform to that predicted by standard interparticle pair potentials, suggesting that the particle packing induced by freezing differs from that formed during equilibrium densification processes. © 2011 American Physical Society.
机译:在胶体悬浮液中溶剂的定向凝固过程中,胶体颗粒从生长的固体中分离出来,形成高密度的区域,其结构的长度范围从颗粒级堆积到大间距在这些区域之间。以前的工作主要集中在中长规模的结构上,因为它是最易于访问的并且被认为在技术上更相关。但是,胶体在颗粒级的堆积不仅在分离过程的理论描述中是重要的组成部分,而且对于冷冻浇铸材料在新应用中的用途也很重要。在这里,我们介绍了实验的结果,其中我们结合了小角度X射线散射和直接光学成像技术,在很宽的长度范围内研究了这种结构。如预期的那样,在冷冻过程中,颗粒被浓缩到冰状树枝状晶体之间的区域中,形成高密度和低密度区域的微观图案。 X射线散射表明,高密度区域中的颗粒紧密堆积以致无法接触。但是,颗粒的排列与标准的颗粒间对电势所预测的排列不一致,这表明冻结引起的颗粒堆积与平衡致密化过程中形成的堆积不同。 ©2011美国物理学会。

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