材料科学
聚二甲基硅氧烷
飞秒
涂层
激光器
合金
复合材料
光热治疗
纳米制造
倾斜(摄像机)
光电子学
纳米技术
超疏水涂料
吸收率
接触角
结冰
纳米颗粒
回复反射器
光学
微型加热器
电子设备和系统的热管理
涡轮叶片
作者
Long Luo,Kai Yin,Yuchun He,Xinghao Song,Lingxiao Wang,Jiaqing Pei,Sergey Makarov
标识
DOI:10.1021/acs.jpclett.6c01893
摘要
Abstract Ice accretion and frosting on outdoor metal infrastructures reduce performance and threaten safety, driving the development of new anti-icing and deicing strategies. Here, we fabricate a flexible ultrablack superhydrophobic film comprising laser-induced graphene and medium-entropy-alloy nanoparticles in polydimethylsiloxane (LIG-MEA-NPs@PDMS, LMP) by blade coating followed by femtosecond-laser direct writing. The key functional interface is created in a single laser-writing step. LMP exhibits a high solar absorptance of 98.92% and excellent photothermal performance, reaching ∼78.8 °C under 1 sun illumination at ambient temperature, while maintaining superhydrophobicity with a water contact angle (WCA) of ≈155°. When attached to stainless steel, LMP delays the onset of frosting and icing at −15 °C by approximately 50% and 55%, respectively. Rapid solar-driven deicing is also achieved, with ice melting and self-detaching within ∼168 s at a tilt angle of 2°. These results offer a scalable strategy for solar-driven anti-icing/antifrosting and deicing.
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