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Thermally driven collapse of a polymer brush in a polymer matrix

机译:聚合物基体中聚合物刷的热驱动塌陷

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The segment density profile of end-functionalized deuterated polystyrene (d-PS) brush in a miscible poly(vinyl methyl ether) (PVME) polymer matrix was studied using neutron reflectivity. Brushes were chemically anchored to a silicon substrate. PVME has a favorable interaction with PS at room temperature. As the temperature increases, the interaction between PS and PVME becomes more unfavorable until in the bulk phase separation would occur. From the reflectivity experiments, it was found that the PVME was expelled from the brush as the temperature was increased. This process was reversible for temperatures up to 90 degrees C; above this the volume fraction in the brush approached unity and macroscopic dewetting occurred. The height of the brush was sufficiently well predicted by a scaling theory, which predicts a cube root dependence on the Flory-Huggins interaction parameter. [References: 49]
机译:使用中子反射率研究了在互溶性聚(乙烯基甲基醚)(PVME)聚合物基质中末端官能化的氘代聚苯乙烯(d-PS)刷子的链段密度分布。将刷子化学固定在硅基板上。在室温下,PVME与PS具有良好的相互作用。随着温度升高,PS和PVME之间的相互作用变得越来越不利,直到发生本体相分离为止。从反射率实验中发现,随着温度的升高,PVME从电刷中排出。此过程在最高90摄氏度的温度下是可逆的。在此之上,刷子中的体积分数趋于一致,并且发生了宏观的去湿。刷的高度已通过缩放理论充分预测,该缩放理论预测了立方体根对Flory-Huggins相互作用参数的依赖性。 [参考:49]

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