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用于多级加密和智能认证的不可克隆二氧化硅纳米复合材料的仿生微纹理复制及稀土空间选择性掺杂

Bionic Micro-Texture Duplication and RE Space-Selective Doping of Unclonable Silica Nanocomposites for Multilevel Encryption and Intelligent Authentication.

作者信息

Yang Jiaxin, Feng Ming, Wang Jingru, Zhao Zejia, Xu Rui, Chen Ziyu, Zhang Kang, Khan Adnan, Han Yingdong, Song Feng, Huang Wei

机构信息

Key Laboratory of Weak Light Nonlinear Photonics, Ministry of Education, School of Physics, Nankai University, Tianjin, 300071, P. R. China.

School of Electronic Information, Huzhou college, Huzhou, 313000, P. R. China.

出版信息

Adv Mater. 2023 Dec;35(49):e2306003. doi: 10.1002/adma.202306003. Epub 2023 Oct 26.

DOI:10.1002/adma.202306003
PMID:37705223
Abstract

High-capacity optical data storage and information encryption by using glass substrates are fascinating due to merits of expanding the functionality and applicability of the optoelectronic field. However, the development of glass substrate-based multi-dimensional information encryption methods has remained a challenge because of the high hardness, brittleness and melting temperature of glasses. Herein, inspired by the unique natural structure of plant leaves, multicolor micro-texture-based physical unclonable functions (PUFs) fluorescence glass labels (MTPLs) are exploited by using ultraviolet photocurable silica nanocomposites and soft replication method. It is the first time that simultaneous rare-earth ion (RE ) space-selective doping and bionic micro-texture replication onto transparent glass have been realized, in which the doping position and fluorescence color of RE and height information of unclonable micro-texture can be selectively equipped for multilevel information encryption. The prepared micro-scale MTPLs are endowed with tunable multilevel authentication models, including macro-scale multicolor fluorescent 2D patterns, micro-scale pattern, color 3D information and intelligence authentication. A high-performance anti-counterfeiting platform with interactive authentication is also established based on the high robustness and security of MTPLs. Such unclonable bionic MTPLs based on RE space-selective doping and micro-texture duplication provide an effective and potentially universal approach for multilevel encryption and intelligent authentication.

摘要

利用玻璃基板进行高容量光学数据存储和信息加密,由于其扩展了光电子领域的功能和适用性,因而极具吸引力。然而,由于玻璃具有高硬度、脆性和熔化温度,基于玻璃基板的多维信息加密方法的发展仍然是一个挑战。在此,受植物叶片独特自然结构的启发,通过使用紫外光固化二氧化硅纳米复合材料和软复制方法,开发了基于多色微纹理的物理不可克隆功能(PUF)荧光玻璃标签(MTPL)。首次实现了在透明玻璃上同时进行稀土离子(RE)的空间选择性掺杂和仿生微纹理复制,其中RE的掺杂位置和荧光颜色以及不可克隆微纹理的高度信息可被选择性地用于多级信息加密。所制备的微尺度MTPL具有可调谐的多级认证模式,包括宏观尺度的多色荧光二维图案、微观尺度图案、彩色三维信息和智能认证。基于MTPL的高鲁棒性和安全性,还建立了一个具有交互式认证的高性能防伪平台。这种基于RE空间选择性掺杂和微纹理复制的不可克隆仿生MTPL为多级加密和智能认证提供了一种有效且可能通用的方法。

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