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Dynamics of moisture interaction with polyelectrolyte multilayers containing nanofibrillated cellulose

机译:水分与含纳米原纤化纤维素的聚电解质多层膜相互作用的动力学

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摘要

Recent findings have shown that it is possible to use the Layer-by-Layer technique to create nanofibrillated cellulose / polyethyleneimine interference films whose colour change with relative humidity. This study uses different optical models to describe spectral ellipsometry measurements data of interference films and how the film properties alter in dry and humid environments. The results indicate that water condensation initially is filling the surface pores within seconds whereas relaxation of the film to adjust to the added water is a slower process that reaches a steady state after ≈20 min. The maximum swelling ratio of the LbL films is almost independent of the number of layers within the film, but decreases considerably by crosslinking via heat treatment. The films show a distinct birefringence with optical axis perpendicular to the surface. Analysis of the moisture response with different optical models indicates that the films swell uniformly in the thickness direction with no separate water film on top. The results provide important understanding for the design of NFC based LbL films for visual moisture sensors and interactive security paper. 
机译:最近的发现表明,有可能使用逐层技术来创建纳米原纤化纤维素/聚乙烯亚胺干涉膜,其颜色会随着相对湿度而变化。这项研究使用不同的光学模型来描述干涉膜的光谱椭偏测量数据,以及膜在干燥和潮湿环境中的特性如何变化。结果表明,水的凝结最初是在几秒钟内充满表面孔隙,而薄膜的松弛以适应所添加的水是一个较慢的过程,在约20分钟后达到稳定状态。 LbL薄膜的最大溶胀率几乎与薄膜中的层数无关,但是通过热处理交联会大大降低。薄膜显示出明显的双折射,光轴垂直于表面。用不同的光学模型对水分响应的分析表明,薄膜在厚度方向均匀膨胀,顶部没有单独的水膜。结果为视觉湿度传感器和交互式防伪纸的基于NFC的LbL膜的设计提供了重要的理解。

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