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Polymer-surfactant complexes: solubilization of polymeric globule by surfactants

机译:聚合物-表面活性剂复合物:表面活性剂可溶解聚合物小球

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The behavior of polymeric globule in a solution containing surfactants is analyzed within the framework of the Flory lattice theory. The amphiphilic structure of surfactant molecule is modeled as two adjacent lattice cells with opposite interaction parameters. Therefore, model surfactants prefer the globule-solvent interface rather than regions inside and outside the globule. It is found that at surfactant concentrations below some Critical Solubilization Concentration (CSC), surfactant molecules are adsorbed on the globular surface of almost invariable spherical shape. The coverage of the globular surface by surfactants takes place in rather broad region of concentrations. If the surfactant concentration exceeds the CSC, the globule sharply transforms to a coil. The transition is found to take place in a very narrow surfactant concentraion region, i. e. polymer chain bypasses intermediate globular shapes and can be approximately regarbed as a chain of spherical blobs. In this case, the solvent quality and the surfactant concentration are two main factors inducing globule-coil transition. Reducing of the transition point with increasing surfactant concentration as well as the steepness of the transition is in qualitative agreement with the experimental data.
机译:在弗洛里晶格理论的框架内分析了含有表面活性剂的溶液中聚合物小球的行为。表面活性剂分子的两亲结构被建模为两个具有相反相互作用参数的相邻晶格单元。因此,模型表面活性剂更喜欢小球与溶剂的界面,而不是小球内部和外部的区域。发现在低于某些临界增溶浓度(CSC)的表面活性剂浓度下,表面活性剂分子被吸附在几乎不变的球形的球形表面上。表面活性剂对球状表面的覆盖发生在相当宽的浓度范围内。如果表面活性剂浓度超过CSC,则小球会急剧转变为线圈。发现过渡发生在非常狭窄的表面活性剂浓缩区域,即。 e。聚合物链绕过球状中间形状,可以大致重新成球形斑点链。在这种情况下,溶剂质量和表面活性剂浓度是引起球状-螺旋转变的两个主要因素。随着表面活性剂浓度的增加而降低转变点以及转变的陡度与实验数据定性一致。

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