光热治疗
材料科学
埃洛石
光热效应
涂层
接触角
复合数
复合材料
润湿
超疏水涂料
表面粗糙度
丙烯酸
纳米技术
化学工程
激光器
表面光洁度
丙烯酸树脂
壳聚糖
热处理
有色的
热的
作者
Haohong Yu,Ming Huang,Min-Shi Huang,Mingxian Liu
标识
DOI:10.1021/acsami.5c20494
摘要
Development of effective anti-icing/deicing strategy is of technical importance, as the natural phenomenon of icing has raised many problems for human social production as well as industrial activities. In this study, a superhydrophobic and colored surface (AC/POS@HNTs) with excellent photothermal deicing properties was designed by combining silane-modified halloysite nanotubes (POS@HNTs) and emerald-green acrylic dye (AC) as photothermal materials. Compared with traditional black photothermal materials, AC/POS@HNTs achieve better photothermal conversion efficiency. The modified HNTs powder was coated on different substrates by double-sided tape, which displays remarkable hydrophobic properties with a water contact angle of up to 154° and a rolling angle of 4°. Moreover, the superhydrophobic HNTs coated surface exhibits excellent photothermal characteristics, attaining an equilibrium temperature of 106.3 °C within 20 s under an intensity of 1 W/cm2 of 808 nm laser light. Additionally, the temperature of the green hydrophobic surface can reach 55 °C under one solar intensity. This results in a significant increase in the deicing rate (16.91%/min) compared to the control group (14.14%/min) and extends the anti-icing time from 71 to 245 s. This work presents a nonblack photothermal composite using hydrophobic modified HNTs and emerald-green acrylic dye, offering promising applications in aviation, roadways, and infrastructure as anti-icing/deicing materials.
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