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Anomalous Diffusion Inside Soft Colloidal Suspensions Investigated by Variable Length Scale Fluorescence Correlation Spectroscopy

机译:通过可变长度尺度荧光相关光谱研究软胶体悬浮液内的异常扩散

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The diffusion of molecules and particles inside the aqueous suspension of soft colloids (polymer microgels) is investigated using variable length scale fluorescence correlation spectroscopy (VLS-FCS). Carbopol 940 is chosen as the model matrix system, and two factors affecting diffusion are investigated: the spatial hindrance and the diffusant–matrix interaction. By studying diffusion of molecules and particles with different sizes inside the suspension, VLS-FCS reveals the restricted motion at a short length scale, that is, in the gaps between the microgels, and normal diffusion at a larger length scale. The information on the gap’s length scale is also accessed. On the other hand, by tuning the pH value, the diffusant–matrix electrostatic attraction is adjusted and the results expose a short-time fast diffusion of probe molecules inside the gaps and a long-time restricted diffusion because of trapping inside the microgels. It is proved that VLS-FCS is a powerful method, investigating anomalous diffusion at different length scales and it is a promising approach to investigate diffusion in complex soft matter systems.
机译:使用可变长度尺度荧光相关光谱(VLS-FCS)研究了软胶体水溶液(聚合物微凝胶)内含水悬浮液内的分子和颗粒的扩散。选择Carbopol 940作为模型矩阵系统,研究了影响扩散的两个因素:空间障碍和扩散 - 基质相互作用。通过在悬浮液内与不同尺寸的不同尺寸的分子和颗粒的扩散,VLS-FC在短的长度尺度下显示限制运动,即在微凝胶之间的间隙和更大的长度尺度的正常扩散中。还访问了有关间隙长度级别的信息。另一方面,通过调节pH值,调节扩散矩阵静电吸引力,结果暴露了在间隙内的探针分子内的短时间快速扩散,并且由于在微凝胶内捕获而产生的长时间受限制的扩散。事实证明,VLS-FCS是一种强大的方法,研究不同长度尺度的异常扩散,并且是一种有望的方法来研究复杂软质系统中的扩散。

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