Key Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun, 130022, Jilin, P. R. China.
State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, China.
Adv Mater. 2018 Mar;30(13):e1704652. doi: 10.1002/adma.201704652. Epub 2018 Feb 14.
Antifogging (AF) structure materials found in nature have great potential for enabling novel and emerging products and technologies to facilitate the daily life of human societies, attracting enormous research interests owing to their potential applications in display devices, traffics, agricultural greenhouse, food packaging, solar products, and other fields. The outstanding performance of biological AF surfaces encourages the rapid development and wide application of new AF materials. In fact, AF properties are inextricably associated with their surface superwettability. Generally, the superwettability of AF materials depends on a combination of their surface geometrical structures and surface chemical compositions. To explore their general design principles, recent progresses in the investigation of bioinspired AF materials are summarized herein. Recent developments of the mechanism, fabrication, and applications of bioinspired AF materials with superwettability are also a focus. This includes information on constructing superwetting AF materials based on designing the topographical structure and regulating the surface chemical composition. Finally, the remaining challenges and promising breakthroughs in this field are also briefly discussed.
自然界中存在的防雾(AF)结构材料具有很大的潜力,可以为新型和新兴产品和技术提供支持,使人类社会的日常生活更加便利,因此这些材料引起了人们极大的研究兴趣,其潜在应用领域包括显示设备、交通、农业温室、食品包装、太阳能产品等。生物 AF 表面的出色性能促使新型 AF 材料的快速发展和广泛应用。事实上,AF 性能与其表面超润湿性密切相关。通常,AF 材料的超润湿性取决于其表面几何结构和表面化学成分的结合。为了探索其一般设计原则,本文总结了仿生 AF 材料研究的最新进展。本文还重点介绍了具有超润湿性的仿生 AF 材料的机理、制造和应用的最新发展。这包括基于形貌结构设计和表面化学成分调控构建超润湿 AF 材料的信息。最后,简要讨论了该领域的剩余挑战和有前景的突破。