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Homogenization of Mutually Immiscible Polymers Using Nanoscale Effects: A Theoretical Study

机译:使用纳米尺度效应的互不相溶聚合物均质化的理论研究

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A theoretical study to investigate homogenization of mutually immiscible polymers using nanoscale effects has been performed. Specifically, the miscibility behavior of all-polymer nanocomposites composed of linear-polystyrene (PS) chains and individual cross-linked poly(methyl methacrylate)-nanoparticles (PMMA-NPs) has been predicted. By using a mean field theory accounting for combinatorial interaction energy and nanoparticle-driven effects, phase diagrams were constructed as a function of PMMA-NP size, PS molecular weight, and temperature. Interestingly, complete miscibility (i.e., homogeneity) was predicted from room temperature to 675 K for PMMA-nanoparticles with radius less than ~7 nm blended with PS chains (molecular weight 150 kDa, nanoparticle volume fraction 20%) in spite of the well-known immiscibility between PS and PMMA. Several nanoscale effects affecting miscibility in PMMA-NP/PS nanocomposites involving small PMMA-nanoparticles are discussed.
机译:进行了理论研究,以研究使用纳米级效应的互不混溶聚合物的均质化。具体而言,已经预测了由线性聚苯乙烯(PS)链和单个交联的聚(甲基丙烯酸甲酯)-纳米粒子(PMMA-NPs)组成的全聚合物纳米复合材料的混溶行为。通过使用解释组合相互作用能和纳米粒子驱动效应的平均场理论,构造了相图,其为PMMA-NP尺寸,PS分子量和温度的函数。有趣的是,对于半径小于7 nm的PMMA纳米粒子,与PS链(分子量150 kDa,纳米粒子的体积分数为20%)混合,从室温到675 K的完全可混溶性(即均匀性)被预测。 PS和PMMA之间的已知不相容性。讨论了影响涉及小的PMMA纳米颗粒的PMMA-NP / PS纳米复合材料混溶性的几种纳米级效应。

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