Stability of colloid–polymer dispersions

R. D. Groot, W. Agterof
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引用次数: 2

Abstract

To describe the stabilization of colloid particles on addition of polymers, the osmotic pressure of a colloid, relative to its supernatant, has been studied. The traditional way to calculate the osmotic pressure, is to use a truncated virial expansion. The problem with such an approach, however, is the fact that the virial expansion is valid only at very low volume fractions of colloid and polymer. To extend the range of validity of the theory to finite volume fractions, we use an established theory of the liquid state. In the approach adopted it is assumed that repulsive forces exist at short distances and attractive forces exist at longer distances between the constituents of the colloid–polymer mixture. The phase behaviour of the system has been calculated as a function of the volume fractions of the colloid particles and of the polymer particles, and as a function of the degree of attraction. Various characteristic phase behaviours have been obtained: (i) depletion flocculation, (ii) bridging flocculation at low polymer concentration followed by restabilisation at higher polymer concentration, and (iii) conditions where the mixture is stable at all volume fractions of colloid and polymer. The theoretical analyses forwarded here reveal that the three-body interaction colloid–polymer–colloid plays an important role in the phase behaviour.
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胶体-聚合物分散体的稳定性
为了描述聚合物加入后胶体颗粒的稳定性,研究了胶体相对于其上清液的渗透压。传统的计算渗透压的方法是用截断的维里膨胀法。然而,这种方法的问题在于,病毒式膨胀仅在胶体和聚合物的体积分数非常低的情况下有效。为了将理论的有效性范围扩展到有限体积分数,我们使用了已建立的液态理论。在采用的方法中,假定在胶体-聚合物混合物的组分之间存在短距离的斥力和较长距离的吸引力。系统的相行为已计算为胶体颗粒和聚合物颗粒的体积分数的函数,并作为吸引力程度的函数。已经获得了不同的特征相行为:(i)耗散絮凝,(ii)低聚合物浓度下的桥接絮凝,随后在高聚合物浓度下的再稳定,以及(iii)在胶体和聚合物的所有体积分数下混合物都稳定的条件。理论分析表明,胶体-聚合物-胶体的三体相互作用在相行为中起着重要作用。
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