4.7 Article

Large-area fabrication of colorful superhydrophobic coatings with high solar reflectivity

Journal

CONSTRUCTION AND BUILDING MATERIALS
Volume 304, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.conbuildmat.2021.124602

Keywords

Superhydrophobicity; Titanium dioxide; Infrared reflecting pigment; Colorful coating; Solar reflectance

Funding

  1. Changzhou Science and Technology Bureau [CM20193004, CE20195038]
  2. Natural Science Foundation of China [52073127]

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In this study, a colorful superhydrophobic coating with high solar reflectivity was successfully prepared, exhibiting excellent resistance to pollution and corrosion, while meeting the building energy saving standards to significantly reduce energy consumption in summer.
In the present work, the colorful superhydrophobic coating with high solar reflectivity was prepared using WPC (White Portland cement), color pigments, Polymethylhydrosiloxane and water as raw materials. The super hydrophobicity of the coating surface comes from the combination of the micron/sub-micron rough structure formed by the accumulation of cement hydration products and pigment particles and the low surface energy provided by PMHS (Polymethylhydrosiloxane). The superhydrophobic coating exhibits excellent resistance to corrosion of aggressive solutions, pollution of liquid foods, and accumulation of dust. The SR (Solar reflectance) of superhydrophobic coatings was optimized by changing the type, content and collocation of pigments. The results show that the superhydrophobic coating filled WP (with white pigment) and YP (yellow pigment) has the best performance. The optimized coating is yellowish brown with IR reflectance of 0.8191 and SR of 0.6569, which meets the building energy saving standard. The results of solar radiation experiments show that the surface temperature of the yellow-brown superhydrophobic coating is reduced by 5.7 degrees C compared with the ordinary Portland cement coating, which has a significant cooling effect. The colorful superhydrophobic coatings also possessed excellent weatherability and high mechanical robustness. Therefore, the coating developed in this work can be used on the exterior wall and roof of the building to reduce the energy consumption of the building in summer.

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