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Robust Superamphiphobic Film from Electrospun TiO2 Nanostructures

机译:静电纺丝TiO2纳米结构的耐用超疏水薄膜

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摘要

Rice-shaped TiO2 nanostructures are fabricated by electro-spinning for creating a robust superamphiphobic coating on glass substrates. The as-fabricated TiO2 nanostructures (sintered at 500 °C) are super-hydrophilic in nature which upon silanization turn into superamphiphobic surface with surface contact angle (SCA) values achieved using water (surface tension, γ = 72.1 mN/m) and hexadecane (surface tension, γ ~ 27.5 mN/m) being 166° and 138.5°, respectively. The contact angle hysteresis for the droplet of water and hexadecane are measured to be 2 and 12°, respectively. Thus, we have successfully fabricated superior self-cleaning coatings that possess exceptional superamphiphobic property by employing a simple, cost- effective, and scalable technique called electrospinning. Furthermore, the coating showed good mechanical and thermal stability with strong adherence to glass surface, thus revealing the potential for real applications.
机译:大米形的TiO2纳米结构是通过电纺丝制造的,可在玻璃基板上形成坚固的超疏水涂层。制成的TiO2纳米结构(在500°C烧结)本质上是超亲水的,在硅烷化后会变成具有表面接触角(SCA)值的超疏水表面,而水接触角(SCA = 72.1 mN / m)和十六烷(表面张力,γ〜27.5 mN / m)分别为166°和138.5°。水滴和十六烷的接触角滞后测得分别为2°和12°。因此,我们通过采用一种简单,经济高效且可扩展的技术(称为静电纺丝技术),成功地制造了具有卓越的超疏水性的​​卓越自洁性涂料。此外,该涂层还表现出良好的机械和热稳定性,并且与玻璃表面具有很强的附着力,因此揭示了实际应用的潜力。

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