首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effect of water contact on the density distributions of thin supported polymer films investigated by an X-ray reflectivity method
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Effect of water contact on the density distributions of thin supported polymer films investigated by an X-ray reflectivity method

机译:X射线反射率法研究水接触对负载型聚合物薄膜密度分布的影响

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The diffusion processes of water molecules into polymer films (PMMA/PS homopolymers and random copolymers) in contact with liquid water were investigated using gravimetric methods and X-ray reflectivity (XRR) analysis. Methods of water contact and XRR measurement were designed for studying the systems in the nonequilibrium state of diffusion. Gravimetric measurements confirmed the Fickian diffusion behavior of films in contact with water. Vertical density distributions in PMMA and methylmethacrylate-rich copolymer films demonstrate the existence of a water-rich layer at the interface. However, with further absorption of water into the film, the overall density increased throughout the film. The results suggest that the diffusion of water into the polymer film occurs to recover density uniformity with a high concentration of water molecules at the surface. Some XRR data for the PS- and styrene-rich copolymer films could not be fit and converted to a vertical density distribution because of their huge diffusion coefficients. However, the reflectivity curves for these films and the vertical density distribution after sufficient water contact suggested that the surfaces of these films were commonly diffused after water contact. Atomic force microscopy (AFM) analysis demonstrated that the surface roughness of these films actually increased with water content.
机译:使用重量法和X射线反射率(XRR)分析研究了水分子在与液态水接触的聚合物膜(PMMA / PS均聚物和无规共聚物)中的扩散过程。设计了水接触和XRR测量方法,以研究处于非平衡扩散状态的系统。重量测定法证实了与水接触的薄膜的Fickian扩散行为。 PMMA和富含甲基丙烯酸甲酯的共聚物薄膜中的垂直密度分布表明,界面处存在富水层。然而,随着水进一步吸收到膜中,整个膜的总密度增加。结果表明,发生了水向聚合物膜中的扩散,以在表面具有高浓度的水分子的情况下恢复密度均匀性。富含PS和苯乙烯的共聚物薄膜的某些XRR数据由于其巨大的扩散系数而无法拟合并转换为垂直密度分布。然而,这些膜的反射率曲线和充分接触水后的垂直密度分布表明,这些膜的表面通常在接触水后扩散。原子力显微镜(AFM)分析表明,这些膜的表面粗糙度实际上随含水量而增加。

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