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Viscosity of PMMA on silica: Epitome of systems with strong polymer-substrate interactions

机译:PMMA在二氧化硅上的粘度:具有强烈的聚合物-底物相互作用的系统的缩影

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We measured the viscosity of poly(methyl methacrylate) (PMMA) films supported by silica, where the carbonyl group on the side chains of the polymer interacts strongly with the hydroxyl groups of the surface. The result shows that the viscosity increases with decreasing film thickness at temperatures above 110 C, but displays an opposite trend at lower temperatures. A three-layer model, consisting of a mobile top layer, a bulk-like middle layer and an immobile bottom layer was found to fit the data well. A detailed breakdown of the layer contributions to the total mobility unveils that the mobility gain brought about by the top layer is balanced by the mobility loss by the bottom layer at 110 C. When the temperature is lowered or raised, the balance is offset, in favor, of the top and bottom layer, respectively.
机译:我们测量了由二氧化硅支撑的聚(甲基丙烯酸甲酯)(PMMA)薄膜的粘度,其中聚合物侧链上的羰基与表面的羟基强烈相互作用。结果表明,在高于110℃的温度下,粘度随膜厚度的减小而增加,而在较低的温度下则呈现相反的趋势。发现由移动顶层,块状中间层和固定底层组成的三层模型可以很好地拟合数据。对该层对总迁移率的贡献的详细分类显示,由顶层带来的迁移率增益与底层在110°C时的迁移率损失得到平衡。当温度降低或升高时,平衡被抵消。分别位于顶层和底层。

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