Lu Bo, Lamnawar Khalid, Maazouz Abderrahim, Zhang Huagui
Université de Lyon, CNRS, UMR 5223, Ingénierie des Matériaux Polymères, INSA Lyon, F-69621, Villeurbanne, France.
Soft Matter. 2016 Apr 7;12(13):3252-64. doi: 10.1039/c5sm02659h. Epub 2016 Mar 2.
An effort was made to demonstrate the dynamic heterogeneity of poly(methyl methacrylate) (PMMA)/poly(vinylidene fluoride) (PVDF) blends, where its composition dependence and the role of interphase were probed. Firstly, the composition dependence of thermorheological complexity of PMMA/PVDF blends in the melt was revealed. The molecular entanglement state involving intra- and interchain entanglements was found to govern the scenario of thermorheological complexity. Intriguingly, local heterogeneity was further demonstrated to exist in the melt-state blends with intermediate compositions, and its origin was depicted to be the interphase. The interphase, coupled with unfavourable interchain entanglements in those blends, could explain the reduced viscosity and speed-up relaxations, contributing to the overall thermorheological complexity. Besides, two experimental glass transition temperatures of blends were resolved in view of segment motions in the miscible phase and the crystal-amorphous interphase, and further assessed via the "self-concentration" concept. The presence of a crystal-amorphous interphase, likely leading to three distinct dynamics of segments in blends, was supposed to contribute to the dynamic heterogeneity in segment relaxations for PMMA/PVDF blends in the solid state. Lastly, effects of dynamic heterogeneity on dynamic mechanical properties were also evaluated.
人们致力于证明聚甲基丙烯酸甲酯(PMMA)/聚偏氟乙烯(PVDF)共混物的动态非均质性,其中探究了其组成依赖性和界面的作用。首先,揭示了PMMA/PVDF共混物在熔体中热流变复杂性的组成依赖性。发现涉及链内和链间缠结的分子缠结状态控制着热流变复杂性的情况。有趣的是,进一步证明在具有中间组成的熔体状态共混物中存在局部非均质性,并且其起源被描述为界面。该界面与这些共混物中不利的链间缠结相结合,可以解释粘度降低和弛豫加速,从而导致整体热流变复杂性。此外,鉴于在可混溶相和晶体-非晶界面中的链段运动,解析了共混物的两个实验玻璃化转变温度,并通过“自浓度”概念进行了进一步评估。晶体-非晶界面的存在可能导致共混物中链段的三种不同动力学,被认为有助于固态PMMA/PVDF共混物中链段弛豫的动态非均质性。最后,还评估了动态非均质性对动态力学性能的影响。