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Laponite-Based Surfaces with Holistic Self-Cleaning Functionality by Combining Antistatics and Omniphobicity

机译:基于Laponite的表面具有整体自清洁功能,通过组合抗静电和乌奈希度

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In the present work, perfluoroalkylated laponite nanoparticles with a high degree of functionalization (60 wt %) have been prepared and a methodology to prepare transparent, antistatic, and omniphobic laponite-based films with holistic self-cleaning properties against liquids, solids and liquid solid mixtures has been developed. The intrinsic electrical and ionic conductivities observed in unmodified laponite coatings are combined with perfluoroalkyl-modified laponite clays. As a result, films with improved self-cleaning functionality based on dust-repellency and omniphobic liquid-repellence (sheet resistance in the range of 10(7) Omega/square and contact angles of 106 degrees(H2O) and 93 degrees (oil)) were obtained. These unique films, being capable to repel dust and liquids, were applied to a variety of substrates (i.e., glass and plastics) and tested against solids and liquids of different nature with excellent performance. Bending tests of these holistic self-cleaning films deposited over flexible substrates showed better mechanical performance than unmodified laponite films.
机译:在本作本作中,已经制备了具有高官能化(60wt%)的全氟烷酰化的丙酸纳米粒子,并制备了用整体自清洁性能的透明,抗静电和无氨基硼钛矿的薄膜,用于液体,固体和液体固体的方法混合物已经开发出来。在未改性的丙岩涂层中观察到的内在电气和离子电导率与全氟烷基改性的兰松岩粘土结合。结果,基于防尘性和无嵌入液体排斥的自清洁功能改善的薄膜(薄层电阻在10(7)Ω/平方和106度(H2O)和93度(油)的接触角)获得了。这些独特的薄膜能够抵抗灰尘和液体,应用于各种基材(即玻璃和塑料),并以优异的性能测试不同性质的固体和液体。沉积在柔性基板上的这些整体自清洁膜的弯曲试验显示出比未修饰的兰尾膜薄膜的机械性能更好。

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