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Probing the the Glass Transition of Atactic Polystyrene Thin Films Using Fiber Optic Refractometry

机译:纤维光学折射法探测含有atactic聚苯乙烯薄膜的玻璃化转变

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An high resolution optical technique based on the film fiber optic refractometer has been used to investigate the effect of the thickness on the glass transition dynamic of Atactic Polystyrene films in the range 20-120 nm. The thermooptic behavior of a set of layers dip coated onto the fiber has been analyzed upon cooling from long term equilibrated melt state. The glassy transition temperature is observed to be thickness-independent as did both the width and the lower and upper bounds of the transition itself. At lowering the thickness of the film the relevant effect is the reduction of the “contrast” between the melt equilibrium phase and the glassy state. A double layers model where a surface soft layer (3.9 nm at 418 K) do not contribute to the glass dynamic retaining liquid features even at temperature well below the glass transition, while the core layer shows a bulk glass transition, is able to quantitatively reproduce reflectance experimental data.
机译:基于薄膜光纤折射仪的高分辨率光学技术已经用于研究厚度对20-120nm的玻璃化转变动态的效果。在从长期平衡的熔体状态冷却时,已经分析了涂覆在纤维上的一组层的热气表。观察到玻璃化转变温度与过渡本身的宽度和下界都一样无关。降低薄膜的厚度,相关效果是熔体平衡相和玻璃状态之间的“对比度”的减少。即使在低于玻璃化转变的温度下,表面软层(418 k处为418k的3.9mm)的双层模型也不会有助于玻璃动态保持液体特征,而芯层显示散装玻璃转变,则能够定量再现反射实验数据。

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