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Experimental approaches for assessing interfacial behavior of polymer films during dissolution in aqueous base

机译:在水性碱溶解过程中评估聚合物膜界面行为的实验方法

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We describe here experiments aimed at probing the interfacial behavior of thin polymer films during dissolution. We have constructed and characterized a unique quartz-crystal microbalance dissolution rate monitor that allows changes in both oscillation frequency and resistance to be accurately recorded at high data rates during film dissolution. Depending on polymer structure and properties, the resistance can remain nearly constant, or can undergo enormous fluctuations that are indicative of transient changes in mechanical properties of the polymer layer during the dissolution process. A theoretical description allows the measured resistance to be related to the structure and properties of the dissolving film. This QCM apparatus has been coupled with a custom high-speed visible reflectance spectrometer, and with an infrared spectrometer, to provide information on the structure of the dissolving film and its chemical composition. The dissolution and swelling of well-defined acrylic and alicyclic copolymers in aqueous base has been examined using these techniques.
机译:我们在这里描述了旨在探索溶解过程中聚合物薄膜界面行为的实验。我们构建并表征了独特的石英晶体微天平溶出速率监测器,该监测器可以在膜溶出过程中以高数据速率准确记录振荡频率和电阻的变化。取决于聚合物的结构和性质,电阻可以保持近乎恒定,或者可以经历巨大的波动,这表明在溶解过程中聚合物层的机械性质发生了短暂的变化。从理论上讲,所测得的电阻与溶解膜的结构和性能有关。该QCM设备已与定制的高速可见反射光谱仪和红外光谱仪结合使用,以提供有关溶解膜结构及其化学成分的信息。使用这些技术已经检查了明确定义的丙烯酸和脂环族共聚物在水性碱中的溶解和溶胀。

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