Ding Sha, Lv Xin, Xia Yong, Liu Yuejun
Key Laboratory of Advanced Packaging Materials and Technology of Hunan Province, Hunan University of Technology, Zhuzhou 412007, China.
Molecules. 2024 May 28;29(11):2536. doi: 10.3390/molecules29112536.
In daily life, counterfeit and substandard products, particularly currency, medicine, food, and confidential documents, are capable of bringing about very serious consequences. The development of anti-counterfeiting and authentication technologies with multilevel securities is a powerful means to overcome this challenge. Among various anti-counterfeiting technologies, fluorescent anti-counterfeiting technology is well-known and commonly used to fight counterfeiters due to its wide material source, low cost, simple usage, good concealment, and simple response mechanism. Spiropyran is favored by scientists in the fields of anti-counterfeiting and information encryption due to its reversible photochromic property. Here, we summarize the current available spiropyran-based fluorescent materials from design to anti-counterfeiting applications. This review will be help scientists to design and develop fluorescent anti-counterfeiting materials with high security, high performance, quick response, and high anti-counterfeiting level.
在日常生活中,假冒伪劣产品,特别是货币、药品、食品和机密文件,可能会带来非常严重的后果。开发具有多级安全性的防伪和认证技术是应对这一挑战的有力手段。在各种防伪技术中,荧光防伪技术因其材料来源广泛、成本低、使用简单、隐蔽性好和响应机制简单而广为人知且常用于打击造假者。螺吡喃因其可逆光致变色特性而受到防伪和信息加密领域科学家的青睐。在此,我们总结了目前可用的基于螺吡喃的荧光材料,从设计到防伪应用。这篇综述将有助于科学家设计和开发具有高安全性、高性能、快速响应和高防伪水平的荧光防伪材料。