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发色防伪与安全纸:一种简便有效的方法。

Chromogenic Anticounterfeit and Security Papers: An Easy and Effective Approach.

作者信息

Guirado-Moreno José Carlos, Guembe-García Marta, García José M, Aguado Roberto, Valente Artur J M, Vallejos Saúl

机构信息

Departamento de Química, Facultad de Ciencias, Universidad de Burgos, Plaza de Misael Bañuelos s/n, 09001 Burgos, Spain.

CQC, Department of Chemistry, University of Coimbra, Rua Larga, 3004-535 Coimbra, Portugal.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 22;13(50):60454-60461. doi: 10.1021/acsami.1c19228. Epub 2021 Dec 7.

Abstract

The synthesis and preparation of 12 chromogenic polymers used to build an intelligent label for security paper applications are described. The process involves coating paper sheets with the polymers. Depending on the number of different polymers used in a combinatory way, a maximum of 12 combinations is possible, thus creating a matrix that is practically impossible to counterfeit. Currently, most anticounterfeiting proposals for paper-based packaging and documents involve some sort of verification under ultraviolet radiation, and the requirement of additional equipment often relegates the end-user to a passive role. In contrast, in our approach, the combination of sensory polymers in an array gives rise to an invisible label, i.e., an owner cryptographic key, which becomes visible upon scattering a nitrite solution (e.g., spraying or using an impregnated foam roller) over the printed label on the security paper. For this purpose, a monomer containing an aromatic primary amino group and another with an activated aromatic ring are covalently bonded to a polymer with high affinity toward paper, consisting essentially of units of methyl methacrylate and 1-vinyl-2-pyrrolidone. Subsequently, the paper samples are coated with the resulting sensory chromogenic polymer. By spraying, painting, or staining an aqueous acid solution of NaNO (at least 1.20 g/L) and the chromogenic polymers, a well-defined color appears, because of the formation of an azo compound. This process provides users with a quick and facile authentication method without additional equipment and without affecting paper strength.

摘要

描述了用于构建安全纸应用智能标签的12种发色聚合物的合成与制备。该过程包括用聚合物涂布纸张。根据以组合方式使用的不同聚合物的数量,最多可能有12种组合,从而创建一个几乎无法伪造的矩阵。目前,大多数针对纸质包装和文件的防伪方案都涉及在紫外线辐射下进行某种验证,而额外设备的要求往往使最终用户处于被动地位。相比之下,在我们的方法中,一系列传感聚合物的组合产生了一个不可见的标签,即所有者加密密钥,当在安全纸上的印刷标签上喷洒亚硝酸盐溶液(例如,喷雾或使用浸渍泡沫辊)时,该标签会变得可见。为此,将含有芳族伯氨基的单体和另一种具有活化芳环的单体共价键合到对纸具有高亲和力的聚合物上,该聚合物主要由甲基丙烯酸甲酯和1-乙烯基-2-吡咯烷酮单元组成。随后,用纸样涂布所得的传感发色聚合物。通过喷洒、涂覆或染色NaNO的酸性水溶液(至少1.20 g/L)和发色聚合物,由于形成偶氮化合物,会出现明确的颜色。该过程为用户提供了一种无需额外设备且不影响纸张强度的快速简便的认证方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a95a/8704190/5eb251e6374a/am1c19228_0005.jpg

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