Bionic Micro‐Texture Duplication and RE3+ Space‐Selective Doping of Unclonable Silica Nanocomposites for Multilevel Encryption and Intelligent Authentication

Author:

Yang Jiaxin1,Feng Ming1,Wang Jingru1,Zhao Zejia1,Xu Rui1,Chen Ziyu2,Zhang Kang1,Khan Adnan1,Han Yingdong3,Song Feng14ORCID,Huang Wei15

Affiliation:

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

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

3. College of Science Civil Aviation University of China Tianjin 300300 China

4. Collaborative Innovation Center of Extreme Optics Shanxi University Taiyuan 030006 P. R. China

5. Key Laboratory of Flexible Electronics (KLOFE) & Institute of Advanced Materials (IAM) Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing Tech University Nanjing 211816 P. R. China

Abstract

AbstractHigh‐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 (RE3+) space‐selective doping and bionic micro‐texture replication onto transparent glass have been realized, in which the doping position and fluorescence color of RE3+ 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 RE3+ space‐selective doping and micro‐texture duplication provide an effective and potentially universal approach for multilevel encryption and intelligent authentication.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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