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一种用于玻璃表面有效防冰/除冰的高透明光热复合涂层。

A highly transparent and photothermal composite coating for effective anti-/de-icing of glass surfaces.

作者信息

Guo Wei, Liu Cui, Li Nian, Xi Min, Che Yamin, Jiang Changlong, Zhang Shudong, Wang Zhenyang

机构信息

Institute of Solid State Physics, Hefei Institutes of Physical Science, Chinese Academy of Sciences Hefei Anhui 230031 China

Department of Chemistry, University of Science and Technology of China Hefei 230026 China.

出版信息

Nanoscale Adv. 2022 May 11;4(13):2884-2892. doi: 10.1039/d2na00151a. eCollection 2022 Jun 28.

Abstract

Anti-/de-icing of glass surfaces is of great importance in present daily life. The long-standing challenge in this field is largely due to the lack of stable multifunctional coatings that can be conveniently and economically constructed on the glass surface, and more importantly, are capable of retaining the original transparency of glass ranging from the visible to the near infrared spectrum. Herein, a direct spraying sol method on the glass surface to prepare a highly transparent and photothermal composite coating is reported. Such multifunctional coating of CuS nanoparticles/organo-silicone sols has displayed a good photothermal conversion property and hydrophobic property and therefore yields excellent anti-icing and self-melting ice properties. The condensation time of water droplets can be extended to 86 s even at -10 °C, which is 3.42 times delayed relative to ordinary blank glass. And the adhesion strength of ice is largely reduced to 72 KPa, which is as low as ∼1/3 that of ordinary glass. Meanwhile, the subcooling of adhering droplets is reduced to -12 °C under one solar illumination condition and exhibits a rapid de-icing capability. More impressively, the prepared functional coating glass shows an outstanding transmittance of more than 75% in the visible region, while it is over the minimum glass transmittance limit allowed by Safety Standards for Glass (GB9656-2016, China). In addition, the multifunctional photothermal glass coating exhibits good physical/chemical stability, which facilitates the long-term application of the coating in different environments.

摘要

玻璃表面的防冰/除冰在当今日常生活中至关重要。该领域长期存在的挑战很大程度上是由于缺乏能够在玻璃表面方便且经济地构建的稳定多功能涂层,更重要的是,这些涂层能够保持玻璃从可见光到近红外光谱范围内的原始透明度。在此,报道了一种在玻璃表面直接喷涂溶胶法制备高透明光热复合涂层的方法。这种硫化铜纳米颗粒/有机硅溶胶的多功能涂层表现出良好的光热转换性能和疏水性,因此具有优异的防冰和自融冰性能。即使在-10°C时,水滴的凝结时间也可延长至86秒,相对于普通空白玻璃延迟了3.42倍。并且冰的粘附强度大幅降低至72 KPa,仅为普通玻璃的约1/3。同时,在一个太阳光照条件下,附着水滴的过冷度降低至-12°C,并表现出快速除冰能力。更令人印象深刻的是,制备的功能涂层玻璃在可见光区域的透过率超过75%,同时超过了中国《玻璃安全标准》(GB9656-2016)允许的最低玻璃透过率限值。此外,多功能光热玻璃涂层具有良好的物理/化学稳定性,有利于该涂层在不同环境中的长期应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4d2/9418967/0f46bde1534b/d2na00151a-f1.jpg

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