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Colloidal crystallite suspensions studied by high pressure small angle x-ray scattering

机译:高压小角X射线散射研究胶态微晶悬浮液

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摘要

We report on high pressure small angle x-ray scattering on suspensions of colloidal crystallites in water. The crystallites made out of charge-stabilized poly-acrylate particles exhibit a complex pressure dependence which is based on the specific pressure properties of the suspending medium water. The dominant effect is a compression of the crystallites caused by the compression of the water. In addition, we find indications that also the electrostatic properties of the system, i.e. the particle charge and the dissociation of ions, might play a role for the pressure dependence of the samples. The data further suggest that crystallites in a metastable state induced by shear-induced melting can relax to a similar structural state upon the application of pressure and dilution with water. X-ray cross correlation analysis of the two-dimensional scattering patterns indicates a pressure-dependent increase of the orientational order of the crystallites correlated with growth of these in the suspension. This study underlines the potential of pressure as a very relevant parameter to understand colloidal crystallite systems in aqueous suspension.
机译:我们报告了在水中胶体微晶悬浮液的高压小角X射线散射。由电荷稳定的聚丙烯酸酯颗粒制成的微晶具有复杂的压力依赖性,该依赖性取决于悬浮介质水的比压特性。主要作用是由水的压缩引起的微晶压缩。另外,我们发现表明该系统的静电性质,即粒子电荷和离子的离解,也可能对样品的压力依赖性起作用。数据进一步表明,在施加压力和用水稀释后,由剪切诱导的熔融诱导的处于亚稳态的微晶可松弛至相似的结构态。二维散射图的X射线互相关分析表明,与悬浮液中的晶体生长相关的微晶取向顺序与压力有关。这项研究强调了潜在的压力作为了解水悬浮液中胶体微晶体系的一个非常重要的参数。

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