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Updated: Jan 6, 2026

Fabrication of Superhydrophobic Metal Surfaces for Anti-Icing Applications
Published on: August 15, 2018
Achieving Extremely Efficient Anti-Icing/Frosting Surface via Synergistic Effects of Photo-Thermal and Calcium
Xinghao Song1, Kai Yin1,2,3, Xun Li4
1Hunan Key Laboratory of Nanophotonics and Devices, School of Physics, Central South University, Changsha, 410083, China.
Abstract:
Composite materials with photothermal effects and low freezing point properties have been widely explored for anti-icing/frosting. However, complex fabrication methods, environmental unfriendliness, and poor anti-icing/frosting performance have hindered their widespread application. Here, superhydrophilic multiscale micro-nano structures composed of non-stoichiometric titanium oxide are constructed on the titanium surfaces using a simple and eco-friendly femtosecond laser direct writing technology. The anti-icing/frosting performance of the samples is enhanced via calcium chloride superspread embedding. The laser-treated, titanium-calcium chloride composite surface (LT-Ti-CC) fabricated at the optimal laser scanning speed (100 mm s-1) exhibits a high average light absorptivity of 96.15% in the 400-1100 nm wavelength range. The surface temperature of LT-Ti-CC increases by 32 °C within 300 s under 1 sun illumination. In addition, the LT-Ti-CC exhibits a ≈500% increase in frosting time, a ≈217% extension in icing time, and a ≈65% decrease in de-icing time compared to pristine-Ti. This simply fabricated and eco-friendly photothermal material may be efficiently incorporated into many anti-icing/ frosting applications.
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