首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >The Stiffening of Ultrathin Polymer Films in the RubberyRegime: The Relative Contributions of Membrane Stress and Surface Tension
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The Stiffening of Ultrathin Polymer Films in the RubberyRegime: The Relative Contributions of Membrane Stress and Surface Tension

机译:橡胶态中超薄聚合物膜的刚度:膜应力和表面张力的相对贡献

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摘要

We have previously reported on a new nanobubble inflation technique wehave developed to measure the absolute creep compliance of polymer films at thicknesses down to 10 nm (1–5). One of the more surprising results to come out of these studies was the observation that as the film thickness decreased the rubbery plateau compliance was seen to decrease dramatically. At the thinnest film thickness ( 10 nm) the compliance decreased (or conversely the stiffness increased) by some 3 orders of magnitude from the bulk value. It is known that, at the nanometer scale, surface tension effects can become significant. We examine here the contribution of surface tension to the observed stiffening and show that, while the contribution is important, it does not account for the degree of stiffening observed. This suggests that molecular or confinement induced stiffening is the major factor.
机译:我们以前曾报道过一种新的纳米气泡膨胀技术,该技术已经开发出来,可用于测量厚度小于10 nm(1-5)的聚合物薄膜的绝对蠕变柔度。从这些研究中得出的更令人惊讶的结果之一是,观察到随着膜厚度的减小,橡胶态的平台柔韧性会急剧下降。在最薄的膜厚度(10 nm)处,柔度从体积值下降(或相反,刚度增加)了大约3个数量级。众所周知,在纳米尺度上,表面张力效应会变得显着。我们在这里检查了表面张力对观察到的变硬的贡献,并表明,尽管该贡献很重要,但它并不能说明观察到的变硬程度。这表明分子或约束引起的硬化是主要因素。

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