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离子微凝胶胶体晶体:用于高端信息安全与加密的双物理和化学颜色响应变色

Ionic Microgel Colloidal Crystals: Responsive Chromism in Dual Physical and Chemical Colors for High-End Information Security and Encryption.

作者信息

Dong Shunni, Zheng Qianqian, Tang Meiqi, Zhu Shaoxiong, Nie Jingjing, Du Binyang

机构信息

National Key Laboratory of Biobased Transportation Fuel Technology, Department of Polymer Science & Engineering, Zhejiang University, Hangzhou 310027, China.

Department of Chemistry, Zhejiang University, Hangzhou 310027, China.

出版信息

ACS Appl Mater Interfaces. 2023 Jul 19;15(28):33985-33997. doi: 10.1021/acsami.3c03742. Epub 2023 Jul 7.

Abstract

Chromic materials play a decisive and escalating role in information security. However, it is challenging to develop chromic materials for encryption technologies that can hardly be imitated. Inspired by versatile metachrosis in nature, a series of coumarin-based 7-(6-bromohexyloxy)-coumarin microgel colloidal crystals (BrHC MGCC) with multiresponsive chromism are able to be assembled by ionic microgels in poly(vinyl alcohol) (PVA) solution followed by two cycles of freezing-thawing. The ionic microgels can be finely tailored by in situ quaternization with tunable size under varied temperatures and hydration energies of counterions as well as quenched luminescence under UV irradiation, which endows BrHC MGCC with intriguing chromism in the dual-channel coloration of physical structural color and chemical fluorescent color. Three types of BrHC MGCC exhibit various change ranges in structural coloration and similar quenching in fluorescence emission, which can be utilized for the development of the static-dynamic combined anticounterfeiting system with dual coloration. The information conveyed by the BrHC MGCC array presents dynamic variation versus temperature, while the static information can be only integrally read in both sunlight and a 365 nm UV lamp. The fabrication of a microgel colloidal crystal with dual coloration opens a facile and ecofriendly window for multilevel information security, camouflage, and a cumbersome authentication process.

摘要

变色材料在信息安全中起着决定性且不断升级的作用。然而,开发难以被模仿的用于加密技术的变色材料具有挑战性。受自然界中多功能变色现象的启发,一系列具有多响应变色特性的基于香豆素的7-(6-溴己氧基)-香豆素微凝胶胶体晶体(BrHC MGCC)能够通过离子微凝胶在聚乙烯醇(PVA)溶液中组装,随后经过两个冻融循环得到。离子微凝胶可以通过原位季铵化进行精细调控,在不同温度和抗衡离子的水合能下具有可调尺寸,并且在紫外线照射下猝灭发光,这赋予了BrHC MGCC在物理结构色和化学荧光色的双通道显色中有趣的变色特性。三种类型的BrHC MGCC在结构显色方面表现出不同的变化范围,在荧光发射方面表现出相似的猝灭,可用于开发具有双色的静态-动态组合防伪系统。BrHC MGCC阵列所传达的信息随温度呈现动态变化,而静态信息只能在阳光和365 nm紫外灯下完整读取。具有双色的微凝胶胶体晶体的制备为多级信息安全、伪装和繁琐的认证过程打开了一个简便且环保的窗口。

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