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首页> 外文期刊>Physical review letters >Two Simultaneous Mechanisms Causing Glass Transition Temperature Reductions in High Molecular Weight Freestanding Polymer Films as Measured by Transmission Ellipsometry
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Two Simultaneous Mechanisms Causing Glass Transition Temperature Reductions in High Molecular Weight Freestanding Polymer Films as Measured by Transmission Ellipsometry

机译:透射椭偏法测量高分子量独立聚合物薄膜中玻璃化转变温度降低的两种同时机理

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摘要

We study the glass transition in confined polymer films and present the first experimental evidence indicating that two separate mechanisms can act simultaneously on the film to propagate enhanced mobility from the free surface into the material. Using transmission ellipsometry, we have measured the thermal expansion of ultrathin, high molecular-weight (MW), freestanding polystyrene films over an extended temperature range. For two different MWs, we observed two distinct reduced glass transition temperatures (T_g's), separated by up to 60 K, within single films with thicknesses h less than 70 nm. The lower transition follows the expected MW dependent, linear T_g(h) behavior previously seen in high MW freestanding films. We also observe a much stronger upper transition with no MW dependence that exhibits the same T_g(h) dependence as supported and low MW freestanding polymer films.
机译:我们研究了受限聚合物薄膜中的玻璃化转变,并提供了第一个实验证据,表明两个独立的机制可以同时作用于薄膜上,以将增强的迁移率从自由表面传播到材料中。使用透射椭偏仪,我们在扩展的温度范围内测量了超薄,高分子量(MW),独立式聚苯乙烯薄膜的热膨胀。对于两种不同的MW,我们在厚度小于70 nm的单个薄膜中观察到两个明显降低的玻璃化转变温度(T_g),相隔最多60K。较低的转变遵循先前在高MW独立膜中看到的预期MW依赖性线性T_g(h)行为。我们还观察到了更强的上过渡,没有MW依赖性,表现出与支撑和低MW独立聚合物薄膜相同的T_g(h)依赖性。

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