Tagliaro Irene, Seccia Stefano, Pellegrini Beatrice, Bertini Sabrina, Antonini Carlo
Department of Materials Science, University of Milano-Bicocca, 20125 Milan, Italy.
Department of Materials Science, University of Milano-Bicocca, 20125 Milan, Italy; Istituto di Ricerche Chimiche e Biochimiche G. Ronzoni, Carbohydrate Science Department, 20133 Milan, Italy.
Carbohydr Polym. 2023 Feb 15;302:120424. doi: 10.1016/j.carbpol.2022.120424. Epub 2022 Nov 29.
One of the current greatest challenges in materials science and technology is the development of safe- and sustainable-by-design coatings with enhanced functionalities, e.g. to substitute fluorinated substances raising concerns for their potential hazard on human health. Bio-based polymeric coatings represent a promising route with a high potential. In this study, we propose an innovative sustainable method for fabricating coatings based on chitosan with modified functionality, with a fine-tuning of coating properties, namely transparency and superhydrophobicity. The process consists in two main steps: i) fluorine-free modification of chitosan functional groups with stearoyl chloride and freeze-drying to obtain a superhydrophobic powder, ii) coating deposition using a novel solvent-free approach through a thermal treatment. The modified chitosan is characterized to assess its chemico-physical properties and confirm the functionality modification with fatty acid tails. The deposition method enables tuning the coating properties of transparency and superhydrophobicity, maintaining good durability.
材料科学与技术当前面临的最大挑战之一是开发具有增强功能的安全且可持续设计的涂层,例如替代那些因其对人类健康的潜在危害而引发关注的含氟物质。生物基聚合物涂层是一条具有巨大潜力的有前景的途径。在本研究中,我们提出了一种创新的可持续方法来制备基于壳聚糖的具有改性功能的涂层,并对涂层性能进行微调,即透明度和超疏水性。该过程包括两个主要步骤:i)用硬脂酰氯对壳聚糖官能团进行无氟改性并冷冻干燥以获得超疏水粉末,ii)通过热处理使用新型无溶剂方法进行涂层沉积。对改性壳聚糖进行表征以评估其化学物理性质,并确认脂肪酸尾部的功能改性。该沉积方法能够调节涂层的透明度和超疏水性,同时保持良好的耐久性。