论文标题

纤维素纤维的依赖水的特性特征聚合物涂层的纳米力学表征

Nanomechanical characterisation of a water-repelling terpolymer coating of cellulosic fibres

论文作者

Auernhammer, Julia, Bell, Alena K., Schulze, Marcus, Du, Yue, Stühn, Lukas, Wendenburg, Sonja, Pause, Isabelle, Biesalski, Markus, Ensinger, Wolfgang, Stark, Robert W.

论文摘要

纤维素纤维上的聚合物涂层被广泛用于通过改善疏水性和湿强度来增强天然纤维性能。在这里,我们研究了Terpolymer P(S-CO-MABP-CO-PYMA)涂层对棉线衬里和桉树纤维的影响,以提高纤维素纤维对湿度的耐药性。通过使用扫描电子显微镜,接触角度测量,拉曼光谱和原子力显微镜来表征涂层和未透射的纤维,目的是将宏观特性(例如羊毛的疏水性与微观特性)与诸如涂层分布和局部纳米力学等显微特性相关联。扫描电子和荧光显微镜结果揭示了涂层在纸羊毛和纤维上的分布。接触角度测量证明了涂层羊毛的疏水特征,这也通过拉曼光谱测量结果证实,该测量研究了单个纤维中的水吸收。通过原子力显微镜测量,水吸收还引起了局部机械性能的变化。这些结果验证了疏水涂层在纤维和纸羊毛上的基本功能,但质疑涂层的同质性。

Polymer coatings on cellulosic fibres are widely used to enhance the natural fibre properties by improving, for example, the hydrophobicity and wet strength. Here, we investigate the effects of a terpolymer P(S-co-MABP-co-PyMA) coating on cotton linters and eucalyptus fibres to improve the resistance of cellulose fibres against wetness. Coated and uncoated fibres were characterised by using scanning electron microscopy, contact angle measurements, Raman spectroscopy and atomic force microscopy with the objective of correlating macroscopic properties such as the hydrophobicity of the fleece with microscopic properties such as the coating distribution and local nanomechanics. The scanning electron and fluorescence microscopy results revealed the distribution of the coating on the paper fleeces and fibres. Contact angle measurements proved the hydrophobic character of the coated fleece, which was also confirmed by Raman spectroscopy measurements that investigated the water uptake in single fibres. The water uptake also induced a change in the local mechanical properties, as measured by atomic force microscopy. These results verify the basic functionality of the hydrophobic coating on fibres and paper fleeces but call into question the homogeneity of the coating.

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