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Distributions of glass-transition temperature and thermal expansivity in multilayered polystyrene thin films studied by neutron reflectivity

机译:中子反射率研究多层聚苯乙烯薄膜的玻璃化转变温度和热膨胀率分布

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摘要

We performed neutron reflectivity measurements on multilayered polymer thin films consisting of alternatively stacked deuterated polystyrene (d-PS) and hydrogenated polystyrene (h-PS) layers ∼200 Å thick as a function of temperature covering the glass-transition temperature Tg, and we found a wide distribution of Tg as well as a distribution of the thermal expansivity α within the thin films, implying the dynamic heterogeneity of the thin films along the depth direction. The reported anomalous film thickness dependences of Tg and α were reasonably understood in terms of the distributions, showing that the surface mobile layer and the bottom hard interfacial layer are, respectively, responsible for the depressions of Tg and α with decreasing film thickness. The molecular mobility in each layer is also discussed in relation to the distribution of Tg, based on the results on mutual diffusion at the layer interface.
机译:我们对多层聚合物薄膜进行了中子反射率测量,该薄膜由交替堆叠的氘化聚苯乙烯(d-PS)和氢化聚苯乙烯(h-PS)层组成,厚度约200埃,它是覆盖玻璃化转变温度Tg的温度的函数, Tg的宽分布以及热膨胀率α在薄膜内的分布,意味着薄膜沿深度方向的动态异质性。根据分布合理地理解了所报道的Tg和α的异常膜厚度依赖性,表明表面可移动层和底部硬质界面层分别是随着膜厚度减小而导致Tg和α降低的原因。基于在层界面处相互扩散的结果,还讨论了与Tg分布有关的每一层中的分子迁移率。

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