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Fast dynamics and relaxation of colloidal drops during the drying process using multispeckle diffusing wave spectroscopy

机译:使用多斑点扩散波谱技术在干燥过程中快速动态化和松弛胶体液滴

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摘要

The fast dynamics generated by the Brownian motion of particles in colloidal drops, and the related relaxation during drying, which play key roles in suspension systems, were investigated incorporating multispeckle diffusing wave spectroscopy (MSDWS). MSDWS equipment was implemented to analyze the relaxation properties of suspensions under a nonergodic and nonstationary drying process, which cannot be elucidated by conventional light scattering methods, such as dynamic light scattering and diffusing wave spectroscopy. Rapid particle movement can be identified by the characteristic relaxation time, which is closely related to the Brownian motion due to thermal fluctuations of the particles. In the compacting stage of the drying process, the characteristic relaxation time increased gradually with the drying time because the particles in the colloidal drop were constrained by themselves. Moreover, variations of the initial concentration and particle size considerably affected the complete drying time and characteristic relaxation time, producing a shorter relaxation time for a low concentrated suspension with small particles.
机译:结合多斑点扩散波谱(MSDWS),研究了由胶体液滴中的布朗运动引起的快速动力学以及干燥过程中的相关松弛(在悬浮系统中起关键作用)。使用MSDWS设备分析悬浮液在非遍历和非平稳干燥过程中的弛豫特性,而传统的光散射方法(如动态光散射和散射波光谱法)无法阐明悬浮液的弛豫特性。可以通过特征驰豫时间来识别快速的粒子运动,该驰豫时间与由于粒子的热波动而引起的布朗运动密切相关。在干燥过程的压实阶段,特征弛豫时间随干燥时间的增加而逐渐增加,因为胶体液滴中的颗粒被自身约束。此外,初始浓度和粒径的变化极大地影响了完整的干燥时间和特征弛豫时间,对于具有小颗粒的低浓度悬浮液,产生了较短的弛豫时间。

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