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通过多种薄膜沉积方法制备具有耐用的超疏水性能、强大的光催化自清洁和自修复性能的环境稳定超疏水表面。

Environmentally durable superhydrophobic surfaces with robust photocatalytic self-cleaning and self-healing properties prepared via versatile film deposition methods.

机构信息

School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.

School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.

出版信息

J Colloid Interface Sci. 2018 Oct 1;527:107-116. doi: 10.1016/j.jcis.2018.05.004. Epub 2018 May 4.

DOI:10.1016/j.jcis.2018.05.004
PMID:29787946
Abstract

Superhydrophobic (SH) surfaces with self-cleaning photocatalytic properties have become an important research focus in recent years. In this work, we fabricated multifunctional and environmentally durable SH surfaces via a facile one-step reaction of octadecyl isocyanate (ODI) with TiO particles. The resulting films possess SH properties, facilitated by a combination of hydrophobic long alkyl chains and the hierarchical crystalline structure. Films can be prepared via spray or blade coating on a variety of hard and soft substrates, and function well when exposed to either air or oil. The coating retains its SH properties for at least 6 months in ambient conditions, and after organic pollution it can recover its SH properties using UV or sun light illumination. After water impalement, the SH properties can self-heal via the self-assembly of long alkyl chains to their original state within several hours at ambient conditions, or within minutes on a heating stage. The covalent bonds between alkyl chains and TiO, together with hydrogen bonds between adjacent alkyl chains, greatly increased the surface durability of the SH films. This multifunctional SH coating is a very promising material for commercial and industrial coating applications.

摘要

具有自清洁光催化性能的超疏水 (SH) 表面近年来成为一个重要的研究焦点。在这项工作中,我们通过简单的一步反应将十八异氰酸酯 (ODI) 与 TiO 颗粒进行反应,制备了多功能且环境稳定的 SH 表面。所得薄膜具有 SH 性能,这得益于疏水性长烷基链和分级结晶结构的结合。可以通过喷雾或刮刀涂覆在各种硬基底和软基底上制备薄膜,并且在暴露于空气或油时都能很好地发挥作用。在环境条件下,涂层的 SH 性能至少可以保持 6 个月,并且在有机污染后可以通过 UV 或阳光照射恢复其 SH 性能。水冲击后,SH 性能可以通过长烷基链在环境条件下在几小时内、或在加热台上在几分钟内自组装到其原始状态来自我修复。烷基链与 TiO 之间的共价键以及相邻烷基链之间的氢键极大地提高了 SH 薄膜的表面耐久性。这种多功能 SH 涂层是一种很有前途的商业和工业涂层应用材料。

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