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首页> 外文期刊>Journal of Macromolecular Science. Physics >Effect of Polymer-Substrate Interactions on the Surface Morphology of Polymer Blend Thin Films: Comparison between Simulation and Experiment
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Effect of Polymer-Substrate Interactions on the Surface Morphology of Polymer Blend Thin Films: Comparison between Simulation and Experiment

机译:聚合物-基质相互作用对聚合物共混薄膜表面形貌的影响:模拟与实验的比较

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Microphase and macrophase separation phenomena can simultaneously appear in ABA/C copolymer blend systems due to the immiscibility among monomers A, B, and C. In this work, the surface morphologies and compositions of ABA/C blend thin films confined between two walls, which were used to mimic SEBS/PMMA films, have been simulated by a lattice Monte Carlo (MC) method. The effect of the polymer-wall interaction on the surface morphologies and compositions of thin films was investigated as a function of blend composition and ,film thickness. It is shown that the simulated surface morphologies of thin films resulting from the macrophase separation between copolymer ABA and homopolymer C and the mcrophase separation between block A and block B in ABA copolymer are similar to the experimental surface morphology of SEBS/PMMA polymer blend films observed by atomic force microscope (AFM). The effect of substrate on the surface morphologies by MC simulation is qualitatively consistent with the experimental results. The composition profiles of thin films are given to characterize the micro- and macrophase separation in thin films. It is indicated that the surface energy of the substrate (substrate/air) plays a crucial role on the surface composition. For a fixed surface, the adsorptions of polymer on the substrate and film thickness are also important.
机译:由于单体A,B和C之间的不溶性,在ABA / C共聚物共混体系中会同时出现微相和宏观相分离现象。在这项工作中,ABA / C共混薄膜的表面形貌和成分被限制在两壁之间,用于模拟SEBS / PMMA膜,已通过点阵蒙特卡洛(MC)方法进行了模拟。研究了聚合物-壁相互作用对薄膜的表面形态和组成的影响,该影响是共混物组成和膜厚的函数。结果表明,由ABA共聚物和均聚物C的宏观相分离以及ABA共聚物中嵌段A和嵌段B的宏观相分离产生的薄膜的模拟表面形貌与观察到的SEBS / PMMA聚合物共混膜的实验表面形貌相似。通过原子力显微镜(AFM)。 MC模拟对基材对表面形貌的影响在质量上与实验结果一致。给出了薄膜的组成曲线以表征薄膜中的微相和宏观相分离。结果表明,基材(基材/空气)的表面能对表面组成起着至关重要的作用。对于固定表面,聚合物在基材上的吸附和薄膜厚度也很重要。

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