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Preparation and photochromic behavior of spiropyran-containing fluorinated polyacrylate hydrophobic coatings

DOI:10.1021/acs.langmuir.8b03229 期刊:Langmuir 出版年份:2018 更新时间:2025-09-23 15:21:01
摘要: In this study, spiropyran (SP)-containing fluorinated polyacrylate (F-PA-SP) latex was prepared by emulsion polymerization using fluorinated and SP-based acrylic monomers as raw materials. FT-IR and 1H-NMR demonstrate that the F-PA-SP copolymer has been successfully synthesized, and DLS and TEM analyses indicate that the synthesized latex has presented a uniform particle size of approximately 200 nm. XPS, AFM and water contact angle (WCA) analysis were used to investigate the surface properties of the F-PA-SP coating and demonstrate that its hydrophobicity is enhanced by addition of a fluorinated acrylic monomer. The photochromic properties of the coating were investigated by UV-Vis spectroscopy, and the results reveal that the F-PA-SP coating possesses better photo-responsiveness, fatigue resistance, and photo-reversibility under UV/Vis irradiation than the coating prepared using fluorinated polyacrylate/SP blended latex. Moreover, the WCA of the F-PA-SP coating subjected to UV/Vis irradiation shows minimal changes and retains its excellent hydrophobicity. Finally, the F-PA-SP latex was applied to cellulosic paper, and the resulting photochromic paper exhibits outstanding reversible color changes and hydrophobicity.
作者: Yan Yang,Ting Zhang,Jiajin Yan,Liuwa Fu,Hongping Xiang,Yanyan Cui,Jiahui Su,Xiaoxuan Liu
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Investigating the preparation and photochromic behavior of spiropyran-containing fluorinated polyacrylate hydrophobic coatings.

The F-PA-SP copolymer was successfully synthesized and demonstrated uniform particle size and narrow particle distribution. The coating exhibited excellent photo-responsiveness, fatigue resistance, and photo-reversibility under UV/Vis irradiation, along with enhanced hydrophobicity due to the addition of a fluorinated acrylic monomer. The photochromic cellulosic paper fabricated from F-PA-SP latex showed outstanding reversible color changes and hydrophobicity.

The study focuses on the photochromic and hydrophobic properties of the coatings but does not extensively explore other potential applications or the environmental impact of the materials used.

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