首页> 外文期刊>Journal of Colloid and Interface Science >Percolation-dominated superhydrophobicity and conductivity for nanocomposite coatings from the mixtures of a commercial aqueous silica sol and functionalized carbon nanotubes
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Percolation-dominated superhydrophobicity and conductivity for nanocomposite coatings from the mixtures of a commercial aqueous silica sol and functionalized carbon nanotubes

机译:渗滤为主的超疏水性和电导率的纳米复合涂料的商业水性硅溶胶和功能化的碳纳米管的混合物

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摘要

Superhydrophobic conductive nanocomposite coatings are prepared for the first time from the simple mixture of a commercial aqueous silica sol and functionalized multiwalled carbon nanotubes (MWNTs) by air-spraying at ambient conditions followed by fluorosilane treatment. The relationship between MWNT content and the structure and properties of the nanocomposite coatings is investigated systematically. An ultra-low threshold (<5. vol.%) for superhydrophobicity is observed, which suggests that MWNTs are superior to any other spherical fillers for the construction of superhydrophobic nanocomposite coatings. When the content of nanotubes is below the threshold, the surface roughness mainly caused by the silica nanoparticles is not enough for creating superhydrophobic surfaces. Only above the threshold, the multiscale hierarchical structure is enough for both high water contact angles (>165°) and extremely low sliding angles (<2°). The conductivity is also percolation dominated, while the threshold for conductivity is much higher than that for superhydrophobicity, which can be ascribed to the encapsulated structure and the agglomeration of nanotubes in the composite coatings during air-spraying. Moreover, the aqueous silica sols hold merits of great film-forming capability at relatively low calcination temperatures, and being free of organic solvents.
机译:超疏水导电纳米复合材料涂料是由市售硅溶胶和功能化多壁碳纳米管(MWNT)的简单混合物通过在环境条件下进行空气喷涂,然后进行氟硅烷处理而首次制备的。系统研究了MWNT含量与纳米复合涂层结构与性能之间的关系。观察到超疏水性的​​超低阈值(<5%(体积)),这表明MWNTs在构造超疏水性纳米复合涂料方面优于任何其他球形填料。当纳米管的含量低于阈值时,主要由二氧化硅纳米颗粒引起的表面粗糙度不足以产生超疏水性表面。仅在阈值之上,多尺度分层结构就足以用于高水接触角(> 165°)和极低滑动角(<2°)。电导率也以渗滤为主,而电导率的阈值则比超疏水性的​​阈值高得多,这可以归因于在空气喷涂过程中复合涂层中纳米管的包封结构和团聚。此外,水性二氧化硅溶胶在较低的煅烧温度下具有很大的成膜能力,并且不含有机溶剂。

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