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利用合成制备的液体光子晶体实现纺织品的仿生结构色

Bionic Structural Coloration of Textiles Using the Synthetically Prepared Liquid Photonic Crystals.

作者信息

Li Xinyang, Wang Xiaohui, Wang Yanan, Hu Mingan, Liu Guojin, Chai Liqin, Zhou Lan, Shao Jianzhong, Li Yichen

机构信息

Engineering Research Center for Eco-Dyeing and Finishing of Textiles, Ministry of Education, Zhejiang Sci-Tech University, Hangzhou, 310018, China.

Haining Green-Gard Textile Sci-Tech Co., Ltd., Jiaxing, 314408, China.

出版信息

Small. 2024 Jan;20(3):e2302550. doi: 10.1002/smll.202302550. Epub 2023 Sep 19.

DOI:10.1002/smll.202302550
PMID:37726238
Abstract

The structural coloration of textiles with bionic photonic crystals (PCs) is expected to become a critical approach to the ecological coloration of textiles. Rapid and large-area preparation of PC structurally colored textiles can be achieved via self-assembly of high mass fractions of liquid photonic crystals (LPCs). However, the rapid and large-scale manufacturing of LPCs remains a challenge. In this work, the pH regulator is added in the process of emulsion polymerization to solve the problem of phase transformation caused by the thermal decomposition of the initiator to produce H , directly achieving 40 wt.% PS nanospheres in the dispersion. Then oligomers and small-molecule salts are removed from the system via dialysis, and the pre-crystallized LPC system is efficiently prepared. Adjusting the particle size and the mass fraction of nanospheres is shown to be an efficient way to control the optical properties of LPCs. The rapid and large-area preparation of PC structural color fabric and the patterned PC structural color fabric with an iridescent effect is implemented by using LPCs as the assembly intermediate. By constructing the encapsulation layer on the surface of the PC structural color fabric, the consistency of high structural stability and high color saturation of the PC is realized.

摘要

采用仿生光子晶体(PCs)对纺织品进行结构着色有望成为纺织品生态染色的关键方法。通过高质量分数的液体光子晶体(LPCs)自组装可实现PC结构色纺织品的快速大面积制备。然而,LPCs的快速大规模制造仍然是一个挑战。在这项工作中,在乳液聚合过程中添加pH调节剂,以解决引发剂热分解产生H导致的相变问题,直接在分散体中获得40 wt.%的PS纳米球。然后通过透析从系统中去除低聚物和小分子盐,高效制备预结晶的LPC系统。结果表明,调节纳米球的粒径和质量分数是控制LPCs光学性质的有效方法。以LPCs为组装中间体,实现了PC结构色织物的快速大面积制备以及具有虹彩效果的图案化PC结构色织物。通过在PC结构色织物表面构建封装层,实现了PC高结构稳定性和高色彩饱和度的一致性。

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