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Increase in the Water Contact Angle of Composite Film Surfaces Caused by the Assembly of Hydrophilic Nanocellulose Fibrils and Nanoclay Platelets

机译:亲水性纳米纤维素原纤维和纳米粘土血小板的组装导致复合膜表面水接触角的增加

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摘要

Controlling the assembly modes of different crystalline nanoparticles in composites is important for the expression of specific characteristics of the assembled structures. We report a unique procedure for increasing water contact angles (CAs) of composite film surfaces via the assembly of two different hydrophilic components, nanocellulose fibrils and nanoclay platelets. The nanocellulose fibrils and nanoclay platelets used have ionic groups on their surfaces in high densities (~1 mmol g~(-1)) and have no hydrophobic surface. The increase in the CA of the nanocelruloseanoclay composite films was thus analyzed on the basis of the air area fractions of their nanostructured surfaces following Cassie's law. The air area fractions were geographically estimated from the atomic force microscopy height profiles of the composite film surfaces. The CAs of the composite film surfaces were found to be well described by Cassie's law. Interestingly, the composite films consisting of two hydrophilic nanoelements with different shapes exhibited CAs larger than those of the individual neat films.
机译:控制复合物中不同晶体纳米颗粒的组装方式对于表达组装结构的特定特征非常重要。我们报告了通过两个不同的亲水性组件,纳米纤维素原纤维和纳米粘土血小板的组装增加复合膜表面的水接触角(CAs)的独特程序。所用的纳米纤维素原纤维和纳米粘土薄片在其表面上具有高密度(〜1 mmol g〜(-1))的离子基团,并且没有疏水性表面。因此,根据卡西定律,基于纳米结构/纳米粘土复合膜的纳米结构表面的空气面积分数,分析了CA的增加。空气面积分数是根据复合膜表面的原子力显微镜高度分布从地理上估算的。发现复合膜表面的CA被卡西定律很好地描述了。有趣的是,由两种具有不同形状的亲水性纳米元素组成的复合膜的CA大于单个纯膜的CA。

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