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New intelligent multifunctional SiO2/VO2 composite films with enhanced infrared light regulation performance, solar modulation capability, and superhydrophobicity

机译:具有增强的红外光调节性能,太阳能调节能力和超疏水性的​​新型智能多功能SiO2 / VO2复合薄膜

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摘要

Highly transparent, energy-saving, and superhydrophobic nanostructured SiO2/VO2 composite films have been fabricated using a sol–gel method. These composite films are composed of an underlying infrared (IR)-regulating VO2 layer and a top protective layer that consists of SiO2 nanoparticles. Experimental results showed that the composite structure could enhance the IR light regulation performance, solar modulation capability, and hydrophobicity of the pristine VO2 layer. The transmittance of the composite films in visible region (Tlum) was higher than 60%, which was sufficient to meet the requirements of glass lighting. Compared with pristine VO2 films and tungsten-doped VO2 film, the near IR control capability of the composite films was enhanced by 13.9% and 22.1%, respectively, whereas their solar modulation capability was enhanced by 10.9% and 22.9%, respectively. The water contact angles of the SiO2/VO2 composite films were over 150°, indicating superhydrophobicity. The transparent superhydrophobic surface exhibited a high stability toward illumination as all the films retained their initial superhydrophobicity even after exposure to 365 nm light with an intensity of 160 mW.cm−2 for 10 h. In addition, the films possessed anti-oxidation and anti-acid properties. These characteristics are highly advantageous for intelligent windows or solar cell applications, given that they can provide surfaces with anti-fogging, rainproofing, and self-cleaning effects. Our technique offers a simple and low-cost solution to the development of stable and visible light transparent superhydrophobic surfaces for industrial applications.
机译:使用溶胶 - 凝胶法制造了高度透明,节能和超疏水纳米结构SiO2 / VO2复合膜。这些复合膜由底层红外(IR) - 调节VO2层和由SiO 2纳米颗粒组成的顶部保护层。实验结果表明,复合结构可以提高原始VO2层的IR光调节性能,太阳能调节能力和疏水性。可见区域(TLUM)中复合膜的透射率高于60%,足以满足玻璃照明的要求。与原始VO2薄膜和钨掺杂VO2膜相比,复合膜的接近红外控制能力分别增强了13.9%和22.1%,而其太阳调节能力分别增强了10.9%和22.9%。 SiO 2 / VO2复合膜的水接触角度超过150°,表明超疏水性。透明的超疏水表面甚至在暴露于365nm光之后保持其初始超细纤维性的所有薄膜均可保持其初始超细纤维,强度为160mW.cm-2。此外,薄膜具有抗氧化和抗酸性能。对于智能窗口或太阳能电池应用,这些特性非常有利,因为它们可以提供具有防雾,防雨和自清洁效果的表面。我们的技术为工业应用的稳定和可见光透明超疏水表面的开发提供了简单而低成本的解决方案。

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