| Literature DB >> 30323333 |
Shuaijun Pan1,2, Rui Guo3,4, Mattias Björnmalm4,5, Joseph J Richardson4, Ling Li3, Chang Peng3,6, Nadja Bertleff-Zieschang4, Weijian Xu7, Jianhui Jiang8, Frank Caruso9.
Abstract
High-performance coatings that durably and fully repel liquids are of interest for fundamental research and practical applications. Such coatings should allow for droplet beading, roll off and bouncing, which is difficult to achieve for ultralow surface tension liquids. Here we report a bottom-up approach to prepare super-repellent coatings using a mixture of fluorosilanes and cyanoacrylate. On application to surfaces, the coatings assemble into thin films of locally multi-re-entrant hierarchical structures with very low surface energies. The resulting materials are super-repellent to solvents, acids and bases, polymer solutions and ultralow surface tension liquids, characterized by ultrahigh liquid contact angles (>150°) and negligible roll-off angles (~0°). Furthermore, the coatings are transparent, durable and demonstrate universal liquid bouncing, tailored responsiveness and anti-freezing properties, and are thus a promising alternative to existing synthetic super-repellent coatings.Entities:
Year: 2018 PMID: 30323333 DOI: 10.1038/s41563-018-0178-2
Source DB: PubMed Journal: Nat Mater ISSN: 1476-1122 Impact factor: 43.841