坚固耐用的光热超疏水涂层,基于贻贝启发的粘附化学,用于高效防冰/除冰

IF 5.4 2区 化学 Q2 CHEMISTRY, PHYSICAL
Meng Wu, Yusheng Zhang, Zhanxiang He, Hao Ding, Wangping Wu
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引用次数: 0

摘要

架空输电线路结冰可能导致电力系统严重故障和大量损失。虽然超疏水表面在防冰方面已被证明是有效的,但大多数超疏水表面的表面结构和功能在极端天气条件下容易受到破坏,其熔化效率较低。在本研究中,基于贻贝启发的快速粘附化学,开发了具有优异机械化学和冰融耐久性的坚固的光热超疏水涂层。聚多巴胺(PDA)中丰富的活性官能团(包括酚羟基和氨基)通过多重键合效应使铝合金(Al)衬底与疏水层之间形成牢固的键合。光热超疏水表面(Al@DPDA-FAS)的接触角(CA)为158 ± 3°,滑动角(SA)为3°,在1次太阳照射10 min后表现出良好的光热性能,温度为80.9℃。其延迟结冰时间显著延长至436 s,光热融冰时间缩短至65 s,表现出抗冰和除冰的性能。此外,Al@DPDA-FAS优异的耐久性在各种评估中得到证实,包括机械磨损、化学浸泡、循环结冰/融化。经砂纸研磨12 m、酸浸18 h、碱浸3 d、结冰/融化40次循环后,其表面仍具有超疏水性。与裸铝表面相比,Al@DPDA-FAS的缓蚀效率可达99.49 %。这项工作提出了一种新的方法,通过贻贝启发的粘附化学来开发具有优异光热防/除冰性能的坚固的超疏水涂层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust durable photothermal superhydrophobic coatings based on mussel-inspired adhesion chemistry for efficient anti-/de-icing
Icing on overhead transmission lines could lead to significant power system failures and substantial losses. Although superhydrophobic surfaces had proven effective in preventing icing, the surface structure and function of the most superhydrophobic anti-icing surfaces with low melting efficiency were easily damaged in extreme weather conditions. In this study, robust photothermal superhydrophobic coatings with excellent mechanochemical and icing-melting durability based on the fast mussel-inspired adhesion chemistry were developed. The abundant active functional groups in polydopamine (PDA), including phenolic hydroxyl and amino groups, enabled robust bonding between the aluminum alloy (Al) substrate and the hydrophobic layer via multiple bonding effects. The photothermal superhydrophobic surface (Al@DPDA-FAS) could reach the contact angle (CA) of 158 ± 3° and the sliding angle (SA) of 3°, and showed good photothermal property with temperature of 80.9 ℃ after 10 min of irradiation under 1 sun. Moreover, its delayed icing time significantly extended to 436 s, and the photothermal ice-melting time was shortened to 65 s, demonstrating anti-icing and de-icing performance. Additionally, the excellent durability of Al@DPDA-FAS was confirmed in various assessments, including mechanical abrasion, chemical soaking, cyclic icing/melting. Its surface still had superhydrophobicity after 12 m of sandpaper abrasion, soaking in acid for 18 h, soaking in alkali for 3 days and 40 cycles of icing/melting, respectively. Moreover, the corrosion inhibition efficiency of Al@DPDA-FAS could reach 99.49 % in comparison with the bare Al surface. This work presented a novel approach to develop a robust superhydrophobic coatings with excellent photothermal anti/de-icing property through mussel-inspired adhesion chemistry.
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来源期刊
CiteScore
8.70
自引率
9.60%
发文量
2421
审稿时长
56 days
期刊介绍: Colloids and Surfaces A: Physicochemical and Engineering Aspects is an international journal devoted to the science underlying applications of colloids and interfacial phenomena. The journal aims at publishing high quality research papers featuring new materials or new insights into the role of colloid and interface science in (for example) food, energy, minerals processing, pharmaceuticals or the environment.
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