Experimental and theoretical study of phase transitions induced in colloidal dispersions by associative polymers

M. Santore, W. Russel, R. Prud’homme
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引用次数: 13

Abstract

We present experimental evidence for reversible phase transitions in aqueous dispersions of acrylic lattices upon addition of two types of hydrophobically modified water-soluble polymers: hydroxyethyl cellulose with randomly placed hydrophobes, and poly(ethylene oxide) with hydrophobic end groups. In the limit of very weak polymer–particle associations flocculation occurs via depletion attraction, while strong associations lead to bridging flocculation with restabilization at higher polymer concentrations. Our observations for the end-modified poly(ethylene oxide) agree well with the predictions of our pseudo-one-component model, which we review briefly. This theory predicts the dependence of the phase transition on the polymer molecular weight and hydrophobic substitution, as well as the nature of the phase transition (fluid–fluid or fluid–solid) and the compositions of the resulting phases.
结合聚合物诱导胶体分散体相变的实验与理论研究
我们提出的实验证据表明,在丙烯酸晶格的水分散体中,加入两种类型的疏水改性水溶性聚合物,即具有随机放置的疏水分子的羟乙基纤维素和具有疏水末端基团的聚环氧乙烷,可以实现可逆相变。在非常弱的聚合物-颗粒结合的极限下,絮凝通过耗竭吸引发生,而在较高的聚合物浓度下,强结合导致桥接絮凝和再稳定。我们对末端改性聚环氧乙烷的观察结果与我们的伪单组分模型的预测非常一致,我们简要地回顾了这一模型。该理论预测了相转变对聚合物分子量和疏水取代的依赖,以及相转变的性质(流体-流体或流体-固体)和所产生相的组成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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