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毫米级液滴内的空间分辨动态光散射:从布朗扩散到水凝胶珠的溶胀

Space-resolved dynamic light scattering within a millimeter-sized drop: From Brownian diffusion to the swelling of hydrogel beads.

作者信息

Milani Matteo, Phou Ty, Prevot Guillame, Ramos Laurence, Cipelletti Luca

机构信息

<a href="https://ror.org/02ftce284">Laboratoire Charles Coulomb</a> (L2C), Université Montpellier, CNRS, Montpellier 34095, France.

<a href="https://ror.org/055khg266">Institut Universitaire de France</a>, Paris 75005, France.

出版信息

Phys Rev E. 2024 Jun;109(6-1):064613. doi: 10.1103/PhysRevE.109.064613.

Abstract

We present a dynamic light scattering setup to probe, with time and space resolution, the microscopic dynamics of soft matter systems confined within millimeter-sized spherical drops. By using an ad hoc optical layout, we tackle the challenges raised by refraction effects due to the unconventional shape of the samples. We first validate the setup by investigating the dynamics of a suspension of Brownian particles. The dynamics measured at different positions in the drop, and hence different scattering angles, are found to be in excellent agreement with those obtained for the same sample in a conventional light scattering setup. We then demonstrate the setup capabilities by investigating a bead made of a polymer hydrogel undergoing swelling. The gel microscopic dynamics exhibit a space dependence that strongly varies with time elapsed since the beginning of swelling. Initially, the dynamics in the periphery of the bead are much faster than in the core, indicative of nonuniform swelling. As the swelling proceeds, the dynamics slow down and become more spatially homogeneous. By comparing the experimental results to numerical and analytical calculations for the dynamics of a homogeneous, purely elastic sphere undergoing swelling, we establish that the mean square displacement of the gel strands deviates from the affine motion inferred from the macroscopic deformation, evolving from fast diffusivelike dynamics at the onset of swelling to slower, yet supradiffusive, rearrangements at later stages.

摘要

我们展示了一种动态光散射装置,用于以时间和空间分辨率探测限制在毫米级球形液滴内的软物质系统的微观动力学。通过使用特殊的光学布局,我们解决了由于样品形状非常规而产生的折射效应所带来的挑战。我们首先通过研究布朗粒子悬浮液的动力学来验证该装置。发现在液滴不同位置(即不同散射角)测量到的动力学与在传统光散射装置中对相同样品获得的动力学非常吻合。然后,我们通过研究由聚合物水凝胶制成的珠子的溶胀过程来展示该装置的能力。凝胶的微观动力学表现出一种空间依赖性,这种依赖性会随着溶胀开始后的时间而强烈变化。最初,珠子外围的动力学比核心区域快得多,这表明溶胀不均匀。随着溶胀的进行,动力学减慢并在空间上变得更加均匀。通过将实验结果与均匀的、纯弹性球体溶胀动力学的数值和分析计算进行比较,我们确定凝胶链的均方位移偏离了从宏观变形推断出的仿射运动,从溶胀开始时的快速扩散型动力学演变为后期较慢但超扩散的重排。

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