Li Xue-Mei, Reinhoudt David, Crego-Calama Mercedes
Laboratory of Supramolecular Chemistry and Technology group, MESA+ Institute for Nanotechnology, University of Twente, PO Box 217, 7500AE, Enschede, The Netherlands.
Chem Soc Rev. 2007 Aug;36(8):1350-68. doi: 10.1039/b602486f. Epub 2007 Jan 31.
Superhydrophobic surfaces have drawn a lot of interest both in academia and in industry because of the self-cleaning properties. This critical review focuses on the recent progress (within the last three years) in the preparation, theoretical modeling, and applications of superhydrophobic surfaces. The preparation approaches are reviewed according to categorized approaches such as bottom-up, top-down, and combination approaches. The advantages and limitations of each strategy are summarized and compared. Progress in theoretical modeling of surface design and wettability behavior focuses on the transition state of superhydrophobic surfaces and the role of the roughness factor. Finally, the problems/obstacles related to applicability of superhydrophobic surfaces in real life are addressed. This review should be of interest to students and scientists interested specifically in superhydrophobic surfaces but also to scientists and industries focused in material chemistry in general.
超疏水表面因其自清洁特性在学术界和工业界都引起了广泛关注。这篇综述重点关注了超疏水表面在制备、理论建模和应用方面(过去三年)的最新进展。制备方法按照自下而上、自上而下和组合方法等分类方法进行了综述。总结并比较了每种策略的优缺点。表面设计和润湿性行为的理论建模进展集中在超疏水表面的转变状态和粗糙度因子的作用上。最后,探讨了超疏水表面在现实生活中应用所涉及的问题/障碍。这篇综述不仅对专门研究超疏水表面的学生和科学家有意义,而且对一般专注于材料化学的科学家和行业也有意义。