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用于光学防伪的结构色材料。

Structural Color Materials for Optical Anticounterfeiting.

作者信息

Hong Wei, Yuan Zhongke, Chen Xudong

机构信息

Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, Guangdong Engineering Technology Research Center for High-Performance Organic and Polymer Photoelectric Functional Films, School of Chemistry, Sun Yat-sen University, Guangzhou, 510275, P. R. China.

出版信息

Small. 2020 Apr;16(16):e1907626. doi: 10.1002/smll.201907626. Epub 2020 Mar 18.

Abstract

The counterfeiting of goods is growing worldwide, affecting practically any marketable item ranging from consumer goods to human health. Anticounterfeiting is essential for authentication, currency, and security. Anticounterfeiting tags based on structural color materials have enjoyed worldwide and long-term commercial success due to their inexpensive production and exceptional ease of percept. However, conventional anticounterfeiting tags of holographic gratings can be readily copied or imitated. Much progress has been made recently to overcome this limitation by employing sufficient complexity and stimuli-responsive ability into the structural color materials. Moreover, traditional processing methods of structural color tags are mainly based on photolithography and nanoimprinting, while new processing methods such as the inkless printing and additive manufacturing have been developed, enabling massive scale up fabrication of novel structural color security engineering. This review presents recent breakthroughs in structural color materials, and their applications in optical encryption and anticounterfeiting are discussed in detail. Special attention is given to the unique structures for optical anticounterfeiting techniques and their optical aspects for encryption. Finally, emerging research directions and current challenges in optical encryption technologies using structural color materials is presented.

摘要

商品造假在全球范围内日益猖獗,几乎影响到从消费品到人类健康的任何可销售物品。防伪对于认证、货币和安全至关重要。基于结构色材料的防伪标签因其生产成本低廉且易于识别,在全球范围内取得了长期的商业成功。然而,传统的全息光栅防伪标签很容易被复制或模仿。最近,通过在结构色材料中引入足够的复杂性和刺激响应能力,在克服这一局限性方面取得了很大进展。此外,结构色标签的传统加工方法主要基于光刻和纳米压印,而诸如无墨印刷和增材制造等新加工方法已经得到发展,能够大规模制造新型结构色安全工程。本文综述了结构色材料的最新突破,并详细讨论了它们在光学加密和防伪中的应用。特别关注了光学防伪技术的独特结构及其加密的光学方面。最后,介绍了使用结构色材料的光学加密技术的新兴研究方向和当前挑战。

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