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超分子聚合物溶液中的布朗粒子。

Brownian particles in supramolecular polymer solutions.

作者信息

van der Gucht J, Besseling N A M, Knoben W, Bouteiller L, Cohen Stuart M A

机构信息

Laboratory of Physical Chemistry and Colloid Science, Wageningen University, P.O. Box 8038, 6700 EK Wageningen, The Netherlands.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2003 May;67(5 Pt 1):051106. doi: 10.1103/PhysRevE.67.051106. Epub 2003 May 19.

Abstract

The Brownian motion of colloidal particles embedded in solutions of hydrogen-bonded supramolecular polymers has been studied using dynamic light scattering. At short times, the motion of the probe particles is diffusive with a diffusion coefficient equal to that in pure solvent. At intermediate time scales the particles are slowed down as a result of trapping in elastic cages formed by the polymer chains, while at longer times the motion is diffusive again, but with a much smaller diffusion coefficient. The influence of particle size and polymer concentration was investigated. The experimental data are compared to a theoretical expression for the mean-square displacement of an embedded particle in a viscoelastic medium, in which the solvent is explicitly taken into account. Differences between the friction and elastic forces experienced by the particle and the macroscopic viscosity and elasticity are explained by the inhomogeneity of the medium on the length scale of the particle size.

摘要

利用动态光散射研究了嵌入氢键超分子聚合物溶液中的胶体粒子的布朗运动。在短时间内,探针粒子的运动是扩散性的,其扩散系数与纯溶剂中的扩散系数相等。在中间时间尺度上,由于粒子被困在由聚合物链形成的弹性笼中,粒子运动减慢,而在更长时间内,运动再次变为扩散性的,但扩散系数要小得多。研究了粒径和聚合物浓度的影响。将实验数据与粘弹性介质中嵌入粒子的均方位移的理论表达式进行了比较,其中明确考虑了溶剂。粒子所经历的摩擦力和弹性力与宏观粘度和弹性之间的差异是由介质在粒径长度尺度上的不均匀性来解释的。

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