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Structure and phase diagram of an adhesive colloidal dispersion under high pressure: A small angle neutron scattering, diffusing wave spectroscopy, and light scatttering study

机译:高压下胶体胶态分散体的结构和相图:小角度中子散射,扩散波谱和光散射研究

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摘要

We have applied small angle neutron scattering (SANS), diffusing wave spectroscopy (DWS), and dynamic light scattering (DLS) to investigate the phase diagram of a sterically stabilized colloidal system consisting of octadecyl grafted silica particles dispersed in toluene. This system is known to exhibit gas-liquid phase separation and percolation, depending on temperature T, pressure P, and concentration phi. We have determined by DLS the pressure dependence of the coexistence temperature and the spinodal temperature to be dP/dT=77 bar/K. The gel line or percolation limit was measured by DWS under high pressure using the condition that the system became nonergodic when crossing it and we determined the coexistence line at higher volume fractions from the DWS limit of turbid samples. From SANS measurements we determined the stickiness parameter tau(B)(P,T,phi) of the Baxter model, characterizing a polydisperse adhesive hard sphere, using a global fit routine on all curves in the homogenous regime at various temperatures, pressures, and concentrations. The phase coexistence and percolation line as predicted from tau(B)(P,T,phi) correspond with the determinations by DWS and were used to construct an experimental phase diagram for a polydisperse sticky hard sphere model system. A comparison with theory shows good agreement especially concerning the predictions for the percolation threshold. From the analysis of the forward scattering we find a critical scaling law for the susceptibility corresponding to mean field behavior. This finding is also supported by the critical scaling properties of the collective diffusion.
机译:我们已经应用小角度中子散射(SANS),扩散波谱(DWS)和动态光散射(DLS)来研究由分散在甲苯中的十八烷基接枝二氧化硅颗粒组成的空间稳定胶体系统的相图。已知该系统根据温度T,压力P和浓度phi显示出气-液相分离和渗滤。通过DLS我们确定了共存温度和旋节线温度的压力依赖性为dP / dT = 77 bar / K。凝胶线或渗透极限是通过DWS在高压下测量的,条件是系统穿过时变为非遍历的,并且我们从混浊样品的DWS极限确定了更高体积分数下的共存线。通过SANS测量,我们确定了Baxter模型的粘性参数tau(B)(P,T,phi),表征了多分散粘合剂硬球体,在不同温度,压力和浓度。由tau(B)(P,T,phi)预测的相共存和渗流线与DWS的测定相对应,并用于构建多分散粘性硬球模型系统的实验相图。与理论的比较显示出良好的一致性,特别是在渗流阈值的预测方面。通过对前向散射的分析,我们发现了与平均场行为相对应的磁化率的临界尺度定律。集体扩散的关键缩放属性也支持这一发现。

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