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Study on the applicability of dynamic light scattering (DLS) to microemulsions including supercritical carbon dioxide-swollen micelles

机译:动态光散射(DLS)对超临界二氧化碳溶胀胶束的微乳液的适用性研究

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摘要

The applicability of dynamic light scattering (DLS) for the characterization of the size of supercritical carbon dioxide (sc-CO2)-swollen micelles in a polyester polyol-based multicomponent microemulsion with non-ionic surfactant has been thoroughly proved for the first time in this work. Systematic experiments confirming that a hydrodynamic mode is observable in either a homodyne or a heterodyne detection scheme as well as the evaluation of the influence of the laser power applied to the slightly colored microemulsion have ensured an accurate implementation of this technique for a technically relevant system. The correlation times associated with the translational diffusion coefficient of the swollen micelles in a continuous liquid phase were measured for temperatures from (298.15 to 338.15) K at pressures of (90 and 100) bar. While there was no significant effect of pressure, it was found that the translational diffusion coefficient increases with increasing temperature as expected. We postulate this is primarily related to the effect of decreasing viscosity of the continuous phase. An estimation of the hydrodynamic diameter of the sc-CO2-swollen micelles is in good agreement with values for similar systems reported in the literature. For the derivation of absolute sizes for corresponding systems, also dynamic viscosity and refractive index data will be determined simultaneously in a currently developed closed experimental loop. (C) 2017 Elsevier Inc. All rights reserved.
机译:动态光散射(DLS)的适用性在与非离子表面活性剂的聚酯多元醇类微乳液中的超临界二氧化碳(SC-CO2) - SWOLLEN Micelles的表征的表征已经彻底证明了这一点工作。确认在杂差或外差检测方案中可观察到流体动力学模式的系统实验以及应用于略微着色的微乳液的激光功率的影响的评估已经确保了在技术相关系统中精确实现了这种技术。测量与(908.15至338.15)k的温度(90和100)棒的温度测量与连续液相中的溶胀胶束的平移胶束的转化胶束的相关时间。虽然压力没有显着影响,但发现平移扩散系数随着预期的增加而增加。我们假设这主要是与连续相粘度降低的效果相关。 SC-CO2-溶胀胶束的流体动力直径的估计与文献中报道的类似系统的值吻合良好。对于相应系统的绝对尺寸的衍生,还将在当前开发的闭合实验回路中同时确定动态粘度和折射率数据。 (c)2017年Elsevier Inc.保留所有权利。

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