壳聚糖
材料科学
涂层
化学工程
接触角
水溶液
吸水率
防水剂
胺气处理
复合材料
有机化学
化学
工程类
作者
Hyo Jeong Kim,Lâm Tấn Hào,Ga-Hyeun Lee,Sejin Choi,Han Gi Chae,Dongyeop X. Oh,Hyungjun Kim,Youngho Eom
标识
DOI:10.1016/j.porgcoat.2023.107672
摘要
Although chitosan-coated hydrostable papers are promising alternatives to non-degradable plastic-coated papers, an acidic chitosan solution is not eco-friendly. Therefore, we developed a non-acidic aqueous coating technique for preparing all-natural water-resistant papers using chitosan nanowhiskers (CSWs). As the CSWs disperse in water after synthesis, they form a hydrophobic layer on the paper after the coating process owing to the hydrophilic-to-hydrophobic self-assembly. Quantum simulations reveal that the repulsion between protonated amine groups contributes to water dispersibility; however, their interfibrillar interaction after coating is hardly dissociated by water. Together with soybean oil, the CSW- and oil-coated papers (C/O-papers) exhibit significantly higher water contact angles (95.8°) and absorption (6.0%) than control paper (21.9° and 91.9%, respectively). Moreover, the C/O-papers had a 16.0- and 9.1-fold higher mechanical modulus and strength (1498.5 and 31.0 MPa, respectively) than control paper (93.8 and 3.4 MPa, respectively) under wet conditions. Therefore, bio-renewable water-resistant paper has great potential for preparing disposable materials.
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