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Intramolecular and intermolecular association in thermoreversible gelation of hydrophobically modified associating polymers

机译:疏水改性缔合聚合物的热可逆凝胶化中的分子内和分子间缔合

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In the thermoreversible gelation of hydrophobically modified water-soluble associating polymers, intramolecular association competes with intermolecular association. The former leads to intramolecular micelles with hydrophobic cores decorated by loops of hydrophilic chains. Loop formation prevents an intermolecular cross-linking. This paper theoretically details the effect of small loops on the sol/gel transition with multiple cross-link junctions in associating polymer solutions. In the case of telechelic associating polymers, the problem is shown to be mathematically equivalent to the mixture of monofunctional and bifunctional polymers. The gelation concentration changes with a parameter describing the probability of a single loop formation. Relative populations of the six fundamental chain categories are derived as a function of the total polymer concentration with special attention to the formation of flower micelles. For polymers carrying many hydrophobes, Monte Carlo computer simulation is carried out by using model chains to see how intramolecular micellization competes with intermolecular cross-linking.
机译:在疏水改性的水溶性缔合聚合物的热可逆凝胶化中,分子内缔合与分子间缔合竞争。前者导致分子内的胶束具有疏水性核心,并被亲水性链环装饰。成环防止分子间的交联。本文理论上详细说明了小环对缔合聚合物溶液中具有多个交联键的溶胶/凝胶转变的影响。在远螯缔合聚合物的情况下,该问题在数学上等同于单官能和双官能聚合物的混合物。胶凝浓度随描述单环形成概率的参数而变化。六个基本链类别的相对种群是作为总聚合物浓度的函数而得出的,尤其要注意花胶束的形成。对于带有许多疏水性的聚合物,通过使用模型链进行蒙特卡洛计算机模拟,以观察分子内胶束化如何与分子间交联竞争。

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