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用于梯度信息加密的可调谐多模态可打印上/下转换纳米材料。

Tunable multimodal printable up-/down-conversion nanomaterials for gradient information encryption.

作者信息

Wu Youfusheng, Xue Enbo, Tian Bin, Zheng Ke, Liang Jing, Wu Wei

机构信息

Laboratory of Printable Functional Materials and Printed Electronics, Research Center for Graphic Communication, Printing and Packaging, Wuhan University, Wuhan 430072, P. R. China.

出版信息

Nanoscale. 2022 May 19;14(19):7137-7145. doi: 10.1039/d2nr01380k.

Abstract

Phosphor-based security techniques have received widespread attention because they can rely on fascinating optical properties (including multicolor emission and various luminous categories) to meet information protection requirements. Carbon dots (CDs) with multicolor fluorescence (FL) and room-temperature phosphorescence (RTP) show enormous potential in advanced information encryption, yet the achievement of tunable multimodal printable CDs confronts numerous challenges. Herein, liquid CDs with color-tunable properties ranging from blue to red are obtained, and the decay time-tunable RTPs of powdered CDs are achieved with a post-treatment of urea in an o-phenylenediamine/HO/HPO system. Based on various security inks, anti-counterfeiting patterns with multilevel security strength are produced through screen printing technology. Color-tunable security patterns are obtained based on different security inks containing multicolor liquid CDs. The security strength can be boosted by combining the color-tunable properties and dual-mode luminescence of FL and RTP. Furthermore, higher-level anti-counterfeiting is achieved by introducing near-infrared induced upconversion luminescence phosphors into CDs systems. The excellent security performance of gradient information encryption shows that the proposed strategy establishes superior coding capacity for advanced information encryption and provides a good reference for cutting-edge research.

摘要

基于磷光的安全技术因其能够依靠迷人的光学特性(包括多色发射和各种发光类别)来满足信息保护要求而受到广泛关注。具有多色荧光(FL)和室温磷光(RTP)的碳点(CDs)在先进信息加密方面显示出巨大潜力,然而,实现可调谐多模态可打印CDs面临诸多挑战。在此,获得了具有从蓝色到红色颜色可调特性的液体CDs,并通过在邻苯二胺/HO/HPO体系中用尿素进行后处理实现了粉末状CDs的衰减时间可调RTPs。基于各种安全油墨,通过丝网印刷技术制作出具有多级安全强度的防伪图案。基于包含多色液体CDs的不同安全油墨获得颜色可调的安全图案。通过结合FL和RTP的颜色可调特性和双模态发光,可以提高安全强度。此外,通过将近红外诱导上转换发光磷光体引入CDs系统实现了更高级别的防伪。梯度信息加密的优异安全性能表明,所提出的策略为先进信息加密建立了卓越的编码能力,并为前沿研究提供了良好的参考。

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