Zhichuang Qi, Jingshan Chen, Zhangmi Huang, Chunyan Hu, Baojiang Liu
{"title":"P(St-BA-MAA)@P GA-Fe3+ 光子晶体复合油墨用于在织物基底上构建非虹彩结构色","authors":"Zhichuang Qi, Jingshan Chen, Zhangmi Huang, Chunyan Hu, Baojiang Liu","doi":"10.1108/prt-03-2024-0024","DOIUrl":null,"url":null,"abstract":"<h3>Purpose</h3>\n<p>This paper aims to prepare Poly(Styrene-Butyl acrylate-Methacrylic acid) @Poly Gallic acid-Fe<sup>3+</sup> photonic crystal composite inks [P(St-BA-MAA)@PGA-Fe<sup>3+</sup> PCCI, @ means the PGA-Fe<sup>3+</sup> is loaded on the microspheres] and construct noniridescent structural colors on fabric substrates, with the goal of improving the visibility of structural colors.</p><!--/ Abstract__block -->\n<h3>Design/methodology/approach</h3>\n<p>P(St-BA-MAA)@PGA-Fe<sup>3+</sup> PCCI were prepared by coating P(St-BA-MAA) microspheres with a metal-polyphenol network formed by gallic acid (GA, C<sub>7</sub>H<sub>6</sub>O<sub>5</sub>) and Fe<sup>3+</sup>. The assembly effects of the inks were explored under different conditions, including pH, temperature, concentration and surface tension. The optimal self-assembly conditions of the inks were determined using the controlled variable method.</p><!--/ Abstract__block -->\n<h3>Findings</h3>\n<p>The results demonstrated the successful preparation of P(St-BA-MAA)@PGA-Fe<sup>3+</sup> PCCI. The metal polyphenol network film composed of GA and Fe<sup>3+</sup> was successfully coated on the surface of P(St-BA-MAA) seed microspheres. The assembly mechanism of the inks was investigated, indicating that at a diethylene glycol (DEG, C<sub>4</sub>H<sub>10</sub>O<sub>3</sub>) concentration of 0.3 wt% and pH of 7, bright noniridescent structural colors could be formed on fabric surfaces after self-assembly by PCCI at 60 °C for 10 min. Furthermore, the mechanical fastness of the structural colors was enhanced due to the adherence of the soft shell composed of P(St-BA-MAA) and GA.</p><!--/ Abstract__block -->\n<h3>Originality/value</h3>\n<p>Utilizing a cost-effective approach and a diverse array of readily available raw materials, we have successfully prepared P(St-BA-MAA)@PGA-Fe<sup>3+</sup> PCCI, which boasts superior performance and offers fabrics a range of unique coloring styles. This innovation paves the way for potential applications of structural colors in practical production, thereby broadening their realm of utility.</p><!--/ Abstract__block -->","PeriodicalId":20214,"journal":{"name":"Pigment & Resin Technology","volume":"31 1","pages":""},"PeriodicalIF":1.3000,"publicationDate":"2024-07-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"P(St-BA-MAA)@P GA-Fe3+ photonic crystal composite inks for the construction of noniridescent structured colors on fabric substrates\",\"authors\":\"Zhichuang Qi, Jingshan Chen, Zhangmi Huang, Chunyan Hu, Baojiang Liu\",\"doi\":\"10.1108/prt-03-2024-0024\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<h3>Purpose</h3>\\n<p>This paper aims to prepare Poly(Styrene-Butyl acrylate-Methacrylic acid) @Poly Gallic acid-Fe<sup>3+</sup> photonic crystal composite inks [P(St-BA-MAA)@PGA-Fe<sup>3+</sup> PCCI, @ means the PGA-Fe<sup>3+</sup> is loaded on the microspheres] and construct noniridescent structural colors on fabric substrates, with the goal of improving the visibility of structural colors.</p><!--/ Abstract__block -->\\n<h3>Design/methodology/approach</h3>\\n<p>P(St-BA-MAA)@PGA-Fe<sup>3+</sup> PCCI were prepared by coating P(St-BA-MAA) microspheres with a metal-polyphenol network formed by gallic acid (GA, C<sub>7</sub>H<sub>6</sub>O<sub>5</sub>) and Fe<sup>3+</sup>. 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P(St-BA-MAA)@P GA-Fe3+ photonic crystal composite inks for the construction of noniridescent structured colors on fabric substrates
Purpose
This paper aims to prepare Poly(Styrene-Butyl acrylate-Methacrylic acid) @Poly Gallic acid-Fe3+ photonic crystal composite inks [P(St-BA-MAA)@PGA-Fe3+ PCCI, @ means the PGA-Fe3+ is loaded on the microspheres] and construct noniridescent structural colors on fabric substrates, with the goal of improving the visibility of structural colors.
Design/methodology/approach
P(St-BA-MAA)@PGA-Fe3+ PCCI were prepared by coating P(St-BA-MAA) microspheres with a metal-polyphenol network formed by gallic acid (GA, C7H6O5) and Fe3+. The assembly effects of the inks were explored under different conditions, including pH, temperature, concentration and surface tension. The optimal self-assembly conditions of the inks were determined using the controlled variable method.
Findings
The results demonstrated the successful preparation of P(St-BA-MAA)@PGA-Fe3+ PCCI. The metal polyphenol network film composed of GA and Fe3+ was successfully coated on the surface of P(St-BA-MAA) seed microspheres. The assembly mechanism of the inks was investigated, indicating that at a diethylene glycol (DEG, C4H10O3) concentration of 0.3 wt% and pH of 7, bright noniridescent structural colors could be formed on fabric surfaces after self-assembly by PCCI at 60 °C for 10 min. Furthermore, the mechanical fastness of the structural colors was enhanced due to the adherence of the soft shell composed of P(St-BA-MAA) and GA.
Originality/value
Utilizing a cost-effective approach and a diverse array of readily available raw materials, we have successfully prepared P(St-BA-MAA)@PGA-Fe3+ PCCI, which boasts superior performance and offers fabrics a range of unique coloring styles. This innovation paves the way for potential applications of structural colors in practical production, thereby broadening their realm of utility.
期刊介绍:
The journal looks at developments in: ■Adhesives and sealants ■Curing and coatings ■Wood coatings and preservatives ■Environmentally compliant coating systems and pigments ■Inks for food packaging ■Manufacturing machinery - reactors, mills mixing and dispersing equipment, pumps ■Packaging, labeling and storage ■Plus topical features and news on materials, coatings, industry people, conferences, books and so on ■Raw materials such as pigments, solvents, resins and chemicals ■Testing equipment and procedures