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首页> 外文期刊>The European physical journal, E. Soft matter >Dramatic stiffening of ultrathin polymer films in the rubbery regime
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Dramatic stiffening of ultrathin polymer films in the rubbery regime

机译:超薄聚合物膜在橡胶状态下的剧烈硬化

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摘要

Recently, we (P.A. O'Connell, G.B. McKenna, Science 307, 1760 (2005)) introduced a novel nano-bubble inflation method to measure the absolute creep compliance of nanometer thick polymer films. In that work it was shown that even at film thicknesses as small as 27.5nm the glass temperature was unchanged for poly(vinyl acetate) (PVAc). Perhaps more importantly, and the subject of the present work, was the observation that these ultrathin films show a dramatic stiffening in the rubbery plateau regime, i.e., the compliance was reduced by over two orders of magnitude compared to the bulk material. In the present work we substantiate the previous results in a study of the thickness dependence of the rubbery compliance of PVAc and polystyrene (PS) films for thicknesses from 13nm to 276nm. We show the substantial stiffening of the plateau region for both materials. Furthermore, the rubbery compliance (inverse of stiffness) scales with approximately the second power (1.8 +/- 0.2) in the film thickness for both materials.
机译:最近,我们(P.A. O'Connell,G.B。McKenna,Science 307,1760(2005))引入了一种新颖的纳米气泡膨胀方法来测量纳米厚聚合物膜的绝对蠕变柔量。在该工作中表明,即使在膜厚度小至27.5nm时,聚乙酸乙烯酯(PVAc)的玻璃温度也没有变化。也许更重要的是,并且是本工作的主题是观察到,这些超薄薄膜在橡胶态的平稳状态下显示出戏剧性的变硬,即,与散装材料相比,柔顺性降低了两个数量级以上。在目前的工作中,我们在研究厚度为13nm至276nm的PVAc和聚苯乙烯(PS)薄膜的橡胶顺应性的厚度依赖性时,证实了先前的结果。我们显示了两种材料的高原区域都明显变硬。此外,两种材料的膜厚之间的橡胶顺应性(刚度的倒数)大约与第二幂(1.8 +/- 0.2)成比例。

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