Si Yifan, Guo Zhiguang
Hubei Collaborative Innovation Centre for Advanced Organic Chemical Materials and Ministry of Education Key Laboratory for the Green Preparation and Application of Functional Materials, Hubei University, Wuhan 430062, People's Republic of China.
Nanoscale. 2015 Apr 14;7(14):5922-46. doi: 10.1039/c4nr07554d.
Superhydrophobic nanocoatings, a combination of nanotechnology and superhydrophobic surfaces, have received extraordinary attention recently, focusing both on novel preparation strategies and on investigations of their unique properties. In the past few decades, inspired by the lotus leaf, the discovery of nano- and micro-hierarchical structures has brought about great change in the superhydrophobic nanocoatings field. In this paper we review the contributions to this field reported in recent literature, mainly including materials, fabrication and applications. In order to facilitate comparison, materials are divided into 3 categories as follows: inorganic materials, organic materials, and inorganic-organic materials. Each kind of materials has itself merits and demerits, as well as fabrication techniques. The process of each technique is illustrated simply through a few classical examples. There is, to some extent, an association between various fabrication techniques, but many are different. So, it is important to choose appropriate preparation strategies, according to conditions and purposes. The peculiar properties of superhydrophobic nanocoatings, such as self-cleaning, anti-bacteria, anti-icing, corrosion resistance and so on, are the most dramatic. Not only do we introduce application examples, but also try to briefly discuss the principle behind the phenomenon. Finally, some challenges and potential promising breakthroughs in this field are also succinctly highlighted.
超疏水纳米涂层作为纳米技术与超疏水表面的结合体,近年来受到了格外的关注,研究重点集中在新颖的制备策略及其独特性能的研究上。在过去几十年里,受荷叶启发,纳米和微米级分级结构的发现给超疏水纳米涂层领域带来了巨大变革。在本文中,我们综述了近期文献中报道的该领域的研究成果,主要包括材料、制备方法及应用。为便于比较,材料分为以下三类:无机材料、有机材料和无机-有机材料。每种材料都有其优缺点及制备技术。通过一些经典实例简要说明了每种技术的过程。各种制备技术在一定程度上存在关联,但也有许多不同之处。因此,根据条件和目的选择合适的制备策略很重要。超疏水纳米涂层的独特性能,如自清洁、抗菌、防冰、耐腐蚀等最为显著。我们不仅介绍了应用实例,还尝试简要讨论了这些现象背后的原理。最后,还简要强调了该领域的一些挑战和潜在的有前景的突破。