Functional UV Blocking and Superhydrophobic Coatings Based on Functionalized CeO(2) and Al(2)O(3) Nanoparticles in a Polyurethane Nanocomposite.

基于聚氨酯纳米复合材料中功能化 CeO(2) 和 Al(2)O(3) 纳米粒子的功能性紫外线阻隔和超疏水涂层

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作者:Velasco-Soto Miguel Angel, Vázquez-Velázquez Arturo Román, Pérez-García Sergio Alfonso, Bautista-Carrillo Lilia Magdalena, Vorobiev Pavel, Méndez-Reséndiz Abraham, Licea-Jiménez Liliana
Water repellency has significant potential in applications like self-cleaning coatings, anti-staining textiles, and electronics. This study introduces a novel nanocomposite system incorporating functionalized Al(2)O(3) and CeO(2) nanoparticles within a polyurethane matrix to achieve hydrophobic and UV-blocking properties. The nanoparticles were functionalized using an octadecyl phosphonic acid solution and characterized by FTIR and XPS, confirming non-covalent functionalization. Spin-coated polyurethane coatings with functionalized and non-functionalized Al(2)O(3), CeO(2,) and binary Al(2)O(3)-CeO(2) nanoparticles were analyzed. The three-layered Al(2)O(3)-CeO(2)-ODPA binary system achieved a contact angle of 166.4° and 85% transmittance in the visible range. Incorporating this binary functionalized system into a 0.4% w/v polyurethane solution resulted in a nanocomposite with 75% visible transmittance, 60% at 365 nm UV, and a 147.7° contact angle after three layers. These findings suggest that ODPA-functionalized nanoparticles, when combined with a polymer matrix, offer a promising approach to developing advanced hydrophobic and UV-protective coatings with potential applications across various industrial sectors.

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