Icephobic materials and strategies: From bio‐inspirations to smart systems

生物 纳米技术 功能(生物学) 建筑工程 计算机科学 材料科学 建筑工程 生化工程 机械工程 自然(考古学) 工程类 生物 古生物学 进化生物学
作者
Xinlin Li,Yan Liu,Zhichun Zhang,Yanju Liu,Jinsong Leng
标识
DOI:10.1002/dro2.131
摘要

Abstract Unwanted ice formations may cause severe functional degradations of facilities and also have a negative impact on their lifespans. Avoiding and removing ice accumulation is always a hot topic in the industrial and technological field. Bionic functional surfaces have been greatly studied for several decades and have proved to be excellent candidates for passive anti‐/deicing applications. However, the drawbacks limit their potential industrial uses under harsh conditions, like low temperatures and high humidity. Most researches on bionic surfaces are focused on a certain function of natural creatures and their underlined fundamental theories are revealed by taking the interface as the static. Actually, living organisms, either plants or animals, are often sensitive and responsive to their surroundings, avoiding risks and even self‐repairing upon damage. From this prospect, a novel view of the bionic icephobic materials has been proposed in the present review, which is expected to be studied and designed by taking the biological species as a system. As two representative icephobic materials, the anti‐/deicing theories of superhydrophobic and slippery surfaces are first discussed. Further, the recent progress of smart icephobic strategies is summarized from interfaces to substrates. We aim to provide new bionic insights on designing future icephobic strategies.
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