磁控溅射薄膜涂层织物结构着色研究进展

IF 2.4 4区 材料科学 Q3 MATERIALS SCIENCE, COATINGS & FILMS
Meilin Huang, Ying-Zhu Wu, Ning-Bo Yi, Sheng-Guo Lu
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引用次数: 0

摘要

越来越多的纺织品正利用磁控溅射技术实现功能化。通过磁控溅射在纺织品上涂上薄膜,可以产生广泛的颜色,这绕过了传统纺织品染色对水、化学染料和辅助装置的高要求,减少了污染问题。通过使用磁控溅射方法将具有特定结构、成分、厚度和形态的金属、半导体或陶瓷靶覆盖单层、双层或多层薄膜,在纺织品表面上成功地产生了金属色或干涉结构色。产品具有智能化、装饰性强、实用性强等特点。本文综述了近年来在纺织品着色方面的研究进展和溅射涂层在彩色纺织品上的应用,包括溅射沉积技术、溅射薄膜的变色机理和颜色调节原理。总结了纺织品彩色溅射薄膜研究的难点和未来发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural colouration on textile fabrics with thin-film coating via magnetron sputtering: A review
ABSTRACT An increasing number of textiles is being functionalized using magnetron sputtering. A wide spectrum of colors can be produced by coating thin films on textiles via magnetron sputtering, which reduces pollution issues by bypassing the high requirements of water, chemical dyes, and auxiliary setups of traditional textile dyeing. By covering single-layer, double-layer, or multilayer films with metal, semiconductor, or ceramic targets possessing a particular structure, composition, thickness, and morphology using the magnetron sputtering method, metallic colors or interference structural colors have been successfully produced on textile surfaces. Intelligent, decorative, and practical products use coated colors and other features. Herein, we review the research advancements in textile coloring and applications of colored textiles coated by sputtering, including the sputter deposition technique, color-generating mechanism, and principles of the color regulation of sputtered thin films. The difficulties and future directions for research on colored sputtered thin films in textiles is also summarized.
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来源期刊
Surface Engineering
Surface Engineering 工程技术-材料科学:膜
CiteScore
5.60
自引率
14.30%
发文量
51
审稿时长
2.3 months
期刊介绍: Surface Engineering provides a forum for the publication of refereed material on both the theory and practice of this important enabling technology, embracing science, technology and engineering. Coverage includes design, surface modification technologies and process control, and the characterisation and properties of the final system or component, including quality control and non-destructive examination.
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