4.7 Article

Fluorine-free, short-process and robust superhydrophobic cotton fabric and its oil-water separation ability

期刊

PROGRESS IN ORGANIC COATINGS
卷 172, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.porgcoat.2022.107122

关键词

Durability; Short -process; Thiol-ene click reaction; Self -healing; Oil -water separation

资金

  1. Key Research and Development Plan of Jiangsu Province [BE2019001]
  2. National Natural Science Foundation of China [519731441]

向作者/读者索取更多资源

This study reported a fluorine-free, short-process and robust superhydrophobic cotton fabric with excellent water repellency and self-healing ability, which can withstand repeated laundering, abrasion, and chemical corrosion, and efficiently separate oil-water mixtures.
Superhydrophobic (SH) fabric is widely used in production and life because of its excellent water repellency, self-cleaning, and anti-fouling properties, however, long process and poor durability against repeated laundering and abrasion of SH fabrics remain challenges. In this study, we report a fluorine-free, short-process and robust SH cotton fabric obtained by dip-coating with SH coatings based on UV induced thiol-ene click reactions among 3-mercaptopropyltriethoxysilane (MPTES), octavinyloctasilasesquioxane (OV-POSS) and 2 %-3 % (mercapto-propyl)methylsiloxane-dimethylsiloxane co-polymers (S-PDMS), and the coated fabric is enough durable against repeated laundering, abrasion, chemical corrosion and UV aging. Furthermore, its self-healing ability owing to heat treatment (140 ?, 30 min) can further improve the coating durability, based on which the coating can withstand at least 28 cycles of repeated accelerated washing (equivalent to 140 cycles of normal home laun-dering) and maintain its superhydrophobicity. Additionally, the coating can separate oil-water mixtures, and the separation efficiency is more than 99 %, even after 10 cycles of repeated oil-water separation processes. The combination of short-process and self-healing ability makes it very promising in the large-scale manufacturing and application of SH surfaces.

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