Peng Chao, Yang Dongjin, You Zhanping, Ruan Di, Guan Peiwen, Ye Zhile, Ning Yunfei, Zhao Ni, Yang Feiyu
Faculty of Engineering, China University of Geosciences, Wuhan 430074, P.R.China.
Department of Civil and Environmental Engineering, Michigan Technological University, Houghton, Michigan 49931-1295, United States.
ACS Appl Mater Interfaces. 2024 Jul 10;16(27):35588-35603. doi: 10.1021/acsami.4c07193. Epub 2024 Jun 26.
Superhydrophobic surfaces exhibit considerable potential in road anti-icing applications due to their unique water-repellent properties. However, the nanorough structure of superhydrophobic coatings is highly susceptible to degradation under wheel rolling in practical applications. To maintain effective hydrophobicity under prolonged exposure to wheel rolling, a multilayer superhydrophobic anti-icing coating was developed. This coating utilizes antifreeze protein (AFP)-modified emulsified asphalt as the substrate with carbon nanotubes (CNTs) and silicon carbide (SiC) as surface coatings. Experimental results indicate that the inclusion of AFP enhances the viscosity of the emulsified asphalt, thereby stabilizing the nanorough structure of the coating. Even after 100 cycles of sandpaper grinding and 500 wheel rolls, the coating maintains robust hydrophobic properties. Moreover, when the coating is worn away by long-term high-strength loads, the exposed AFP-modified emulsified asphalt layer continues to exhibit effective anti-icing capabilities, significantly prolonging the complete freezing time of water droplets on its surface. Additionally, the incorporation of CNTs and SiC enhances the photothermal conversion performance, further improving the anti-icing efficiency of the coating under light irradiation. Overall, this coating shows promise for application in road anti-icing strategies.
超疏水表面因其独特的疏水性能在道路防冰应用中展现出巨大潜力。然而,在实际应用中,超疏水涂层的纳米粗糙结构在车轮滚动下极易降解。为了在长时间暴露于车轮滚动的情况下保持有效的疏水性,开发了一种多层超疏水防冰涂层。该涂层采用抗冻蛋白(AFP)改性乳化沥青作为基底,以碳纳米管(CNTs)和碳化硅(SiC)作为表面涂层。实验结果表明,加入AFP可提高乳化沥青的粘度,从而稳定涂层的纳米粗糙结构。即使经过100次砂纸打磨循环和500次车轮滚动,该涂层仍保持强大的疏水性能。此外,当涂层因长期高强度载荷而磨损时,暴露的AFP改性乳化沥青层继续表现出有效的防冰能力,显著延长其表面水滴的完全冻结时间。此外,CNTs和SiC的加入提高了光热转换性能,进一步提高了涂层在光照下的防冰效率。总体而言,这种涂层在道路防冰策略中具有应用前景。