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首页> 外文期刊>Biointerphases >Changes in Permeability and in Mechanical Properties of Layer-by-Layer Films Made from Poly(allylamine) and Montmorillonite Postmodified upon Reaction with Dopamine
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Changes in Permeability and in Mechanical Properties of Layer-by-Layer Films Made from Poly(allylamine) and Montmorillonite Postmodified upon Reaction with Dopamine

机译:与多巴胺反应后改​​性的聚烯丙胺和蒙脱土制成的多层膜的渗透性和机械性能的变化

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Polyelectrolyte multilayer (PEM) films present a versatile surface functionalization method allowing to address many applications. These coatings suffer; however, from weak mechanical properties this problem can be addressed by the regular incorporation of clays in the layering process. To allow for an even better control of a whole set of film properties, among them their thermal stability, their stability in water, and their impermeability to anions, we postmodify (PAH-MMT)n films with polydopamine, by putting the pristine PEM films in contact with an oxygenated dopamine solution. This straightforward treatment allows to totally suppress the diffusion of hexacyanoferrate anions in the films and affects significantly its mechanical properties even, if the distribution of polydopamine through the film thickness is not yet known.
机译:聚电解质多层(PEM)膜提供了一种通用的表面功能化方法,可解决许多应用问题。这些涂层受损害;但是,由于机械性能较弱,可以通过在分层过程中定期掺入粘土来解决此问题。为了更好地控制整套薄膜性能,包括其热稳定性,在水中的稳定性以及对阴离子的不渗透性,我们通过放置原始的PEM薄膜对聚多巴胺进行后改性(PAH-MMT)n薄膜与氧化的多巴胺溶液接触。这种直接的处理方法可以完全抑制六氰合铁酸根阴离子在薄膜中的扩散,即使聚多巴胺在整个薄膜厚度中的分布尚不清楚,也可以显着影响其机械性能。

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