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首页> 外文期刊>Journal of Molecular Liquids >Induced force between colloidal particles with end-grafted polydisperse polymer chains: The role of the grafting mode
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Induced force between colloidal particles with end-grafted polydisperse polymer chains: The role of the grafting mode

机译:胶体颗粒与末端接枝多分散聚合物链之间的诱导力:嫁接模式的作用

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We consider a low-density assembly of identical spherical colloids, on which one has grafted f linear chains from an initial polymer solution of volume fraction, Phi(0). Once the grafting process is accomplished, the clothed colloids are immersed in a good solvent. We assume that the lengths of the grafted chains are randomly distributed around the core of the clothed particles. For simplicity, we suppose that the clothed particles are small enough to be considered as polydisperse star-polymers. The purpose is the computation of the effective force between polydisperse star-polymers, which is caused by the excluded volume interaction between monomers. More precisely, we are interested in a quantitative investigation of the influence of the grafting mode on the force expression. To compute the latter, we first study the structure of the polymer-layer around each particle, depending on the grafting nature (from a melt, dilute or semi-dilute solutions). Second, thanks to the obtained size distribution, we determine the expected force versus the center-to-center distance. When the grafting is realized from a semi-dilute solution, we show the existence of distance-regimes, where the force expression is not the same. In any case, we find that the force decays according to a power law in the interparticle distance, with amplitudes that explicitly depend on the number of arms per star-polymer, f, and the volume fraction of the initial solution, Phi(0). The main conclusion is that, the induced force is more significant only when the grafting is realized exposing the clothed colloidal particles to more concentrated initial solutions. Finally, the obtained results are compared to those relative to the situation when the grafting is accomplished rather from a polymer melt. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们考虑相同的球形胶体的低密度组装,其中一个具有来自体积分数的初始聚合物溶液的接枝F线性链,PHI(0)。一旦完成接枝过程,衣物胶体浸入良好的溶剂中。我们假设接枝链的长度随机分布在衣物颗粒的核心周围。为简单起见,我们假设衣物颗粒足够小以被认为是多分散的星形聚合物。目的是计算多分散星聚合物之间的有效力,这是由单体之间的排除体积相互作用引起的。更确切地说,我们对对嫁接模式对力表达的影响的定量调查感兴趣。为了计算后者,我们首先研究各颗粒周围的聚合物层的结构,这取决于嫁接性质(来自熔体,稀释或半稀释溶液)。其次,由于所获得的尺寸分布,我们确定预期的力量与中心到中心距离。当从半稀释解决方案中实现接枝时,我们展示了距离制度的存在,其中力表达是不一样的。在任何情况下,我们发现,在颗粒间距离中的电力法中,力衰减,具有显式依赖于每种星聚合物的臂的数量和初始溶液的体积分数,phi(0) 。主要结论是,诱导力才能在将嫁接胶体颗粒暴露于更浓缩的初始溶液时,诱导力更显着。最后,将得到的结果与相对于嫁接成分的情况相对于聚合物熔体进行比较。 (c)2017年Elsevier B.V.保留所有权利。

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