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Tunable Surface Properties of Aluminum Oxide Nanoparticles from Highly Hydrophobic to Highly Hydrophilic

机译:氧化铝纳米颗粒从高疏水性到高亲水性的可调表面性质

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摘要

The formation of materials with tunable wettability is important for applications ranging from antifouling to waterproofing surfaces. We report the use of various low-cost and nonhazardous hydrocarbon materials to tune the surface properties of aluminum oxide nanoparticles (NPs) from superhydrophilic to superhydrophobic through covalent functionalization. The hydrocarbon surfaces are compared with a fluorinated surface for wettability and surface energy properties. The role of NPs’ hydrophobicity on their dynamic interfacial behavior at the oil–water interface and their ability to form stable emulsions is also explored. The spray-coated NPs provide textured surfaces (regardless of functionality), with water contact angles (θ) of 10–150° based on their surface functionality. The superhydrophobic NPs are able to reduce the interfacial tension of various oil–water interfaces by behaving as surfactants.
机译:具有可调润湿性的材料的形成对于从防污到防水表面的各种应用都很重要。我们报告了使用各种低成本和无害的碳氢化合物材料通过共价官能化将氧化铝纳米粒子(NPs)的表面性能从超亲水性转变为超疏水性的​​特性。将烃表面与氟化表面的润湿性和表面能性质进行比较。还探讨了NPs的疏水性对其在油水界面的动态界面行为以及形成稳定乳液的能力的影响。喷涂的NP可提供带纹理的表面(不考虑功能性),基于其表面功能性,水接触角(θ)为10–150°。超疏水性NP通过充当表面活性剂,能够降低各种油水界面的界面张力。

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