Primc Gregor, Mozetič Miran
Department of Surface Engineering, Jozef Stefan Institute, Jamova cesta 39, 1000 Ljubljana, Slovenia.
Polymers (Basel). 2024 Sep 4;16(17):2516. doi: 10.3390/polym16172516.
Nanocellulose is among the most promising materials for enhancing the mechanical properties of polymer composites. Broad application is, however, limited by inadequate surface properties. A standard technique for tailoring the surface composition and wettability of polymers is a brief treatment with non-equilibrium gaseous plasma, but it often fails when treating materials with a large surface-to-mass ratio, such as cellulose nanofibers. In this paper, the theoretical limitations are explained, the approaches reported by different groups are reviewed, and the results are interpreted. The treatment of dry nanocellulose is limited by the ability of uniform treatment, whereas the plasma treatment of nanocellulose dispersed in liquids is a slow process. The methods for enhancing the treatment efficiency for both dry and water-dispersed nanocellulose are explained.
纳米纤维素是增强聚合物复合材料机械性能最具前景的材料之一。然而,其广泛应用受到表面性能不足的限制。一种调整聚合物表面组成和润湿性的标准技术是用非平衡气态等离子体进行短暂处理,但在处理具有大比表面积的材料(如纤维素纳米纤维)时,这种方法常常失效。本文解释了理论局限性,回顾了不同研究团队报道的方法,并对结果进行了解读。干燥纳米纤维素的处理受均匀处理能力的限制,而分散在液体中的纳米纤维素的等离子体处理是一个缓慢的过程。文中还阐述了提高干燥和水分散纳米纤维素处理效率的方法。