Instituto de Física, Universidad Nacional Autónoma de México , P.O. Box 20-264, México, D.F. 01000, Mexico.
J Phys Chem B. 2014 Jan 30;118(4):1146-58. doi: 10.1021/jp4105344. Epub 2014 Jan 21.
Structural and viscoelastic properties of slightly interconnected polymer networks immersed in a solvent have been studied in two cases: when the polymer network is building up and when the polymer network is shrinking stepwise in a controlled way. To accomplish this goal, the mean square displacement (MSD) of embedded microspheres in the polymer network was measured as a function of time, with diffusive wave spectroscopy. Particle motion was analyzed in terms of a model, based on a Fokker-Planck type equation, developed for describing particles in Brownian motion within a network that constrain their movement. The model reproduces well the experimental features observed in the MSD vs t curves. The variation of the parameters describing the structure of the network can be understood as the polymerization comes about, and also after the successive volume contractions. In addition, from the MSD curves, the complex shear moduli were obtained in a wide range of frequencies when the network is building up, and at the different shrinking states of the network. Our microrheological results give an insight about the dynamics of embedded particles in slightly interconnected networks, which were also compared with similar results for polymers without interconnections and polymer gels.
当聚合物网络在构建时,以及当聚合物网络以受控的逐步收缩方式收缩时。为了实现这一目标,使用扩散波光谱法测量了聚合物网络中嵌入微球的均方位移 (MSD) 随时间的变化。根据为描述在限制其运动的网络中布朗运动粒子的福克-普朗克类型方程开发的模型,分析了粒子运动。该模型很好地再现了在 MSD 与 t 曲线中观察到的实验特征。随着聚合反应的进行以及随后的体积收缩,描述网络结构的参数的变化可以被理解。此外,当网络构建时以及在网络的不同收缩状态下,从 MSD 曲线中获得了宽频率范围内的复剪切模量。我们的微流变学结果深入了解了嵌入在轻微交联网络中的粒子的动力学,这些结果还与无连接聚合物和聚合物凝胶的类似结果进行了比较。