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基于刺激响应数字聚合物的具有增强信息加密功能的多级防伪条形码

Multilevel Anti-counterfeiting Barcode with Enhanced Information Encryption Based on Stimulus-Responsive Digital Polymers.

作者信息

Huang Xiaoman, Liang Zhishan, Yang Xiaojie, Piao Minghao, Huang Zhihao, Zhang Zhengbiao

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, China.

Collaborative Innovation Center of Novel Software Technology and Industrialization, School of Computer Science and Technology, Soochow University, Suzhou 215123, China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 21;16(33):43075-43082. doi: 10.1021/acsami.4c08408. Epub 2024 Jul 17.

Abstract

In response to the escalating challenges of counterfeiting due to technological and socioeconomic advancements, a novel trilevel anti-counterfeiting Quick Response (QR) code system has been developed. This system integrates digital polymers with QR code and stimulus-responsive chromophores, , rhodamine B (RB), rhodamine 6G (R6G), and spiropyran (SP), to provide a sophisticated security solution. This advanced barcode remains concealed until specific stimuli reveal it and can be scanned by a smartphone, enabling first and second level anti-counterfeiting. For the third level of security, the encrypted information within the digital polymers can only be deciphered using tandem mass spectrometry. This innovative approach not only enhances security features but also offers reversible visibility and a complex verification process. This trilevel system surpasses traditional single-level anti-counterfeiting methods and holds significant potential for future applications in protecting brand authenticity and managing data storage, contributing new concepts and techniques to the field of high-security anti-counterfeiting materials.

摘要

针对技术和社会经济进步导致的假冒问题不断升级的挑战,开发了一种新型的三级防伪快速响应(QR)码系统。该系统将数字聚合物与QR码以及刺激响应发色团(罗丹明B(RB)、罗丹明6G(R6G)和螺吡喃(SP))集成在一起,以提供一种复杂的安全解决方案。这种先进的条形码在特定刺激揭示它之前一直隐藏着,并且可以被智能手机扫描,实现一级和二级防伪。对于第三级安全,数字聚合物中的加密信息只能使用串联质谱法进行解密。这种创新方法不仅增强了安全功能,还提供了可逆的可见性和复杂的验证过程。这种三级系统超越了传统的单级防伪方法,在保护品牌真实性和管理数据存储方面具有巨大的未来应用潜力,为高安全性防伪材料领域贡献了新的概念和技术。

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