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Unclonable Micro-Texture with Clonable Micro-Shape towards Rapid, Convenient, and Low-Cost Fluorescent Anti-Counterfeiting Labels.
Lin, Yuhong; Zhang, Hongkun; Feng, Jingyun; Shi, Bori; Zhang, Mengying; Han, Yuexing; Wen, Weijia; Zhang, Tongyi; Qi, Yabing; Wu, Jinbo.
Afiliação
  • Lin Y; Materials Genome Institute, Shanghai University, Shanghai, 200444, China.
  • Zhang H; School of Computer Engineering and Science, Shanghai University, Shanghai, 200444, China.
  • Feng J; Materials Genome Institute, Shanghai University, Shanghai, 200444, China.
  • Shi B; Materials Genome Institute, Shanghai University, Shanghai, 200444, China.
  • Zhang M; Department of Physics, Shanghai University, Shanghai, 200444, China.
  • Han Y; School of Computer Engineering and Science, Shanghai University, Shanghai, 200444, China.
  • Wen W; Shanghai Institute for Advanced Communication and Data Science, Shanghai University, Shanghai, 200444, China.
  • Zhang T; Department of Physics, The Hong Kong University of Science and Technology, Hong Kong, China.
  • Qi Y; Materials Genome Institute, Shanghai University, Shanghai, 200444, China.
  • Wu J; Energy Materials and Surface Sciences Unit (EMSSU), Okinawa Institute of Science and Technology Graduate University (OIST), 1919-1 Tancha, Onna-son, Okinawa, 904-0495, Japan.
Small ; 17(30): e2100244, 2021 07.
Article em En | MEDLINE | ID: mdl-34160145
ABSTRACT
An ideal anti-counterfeiting label not only needs to be unclonable and accurate but also must consider cost and efficiency. But the traditional physical unclonable function (PUF) recognition technology must match all the images in a database one by one. The matching time increases with the number of samples. Here, a new kind of PUF anti-counterfeiting label is introduced with high modifiability, low reagent cost (2.1 × 10-4 USD), simple and fast authentication (overall time 12.17 s), high encoding capacity (2.1 × 10623 ), and its identification software. All inorganic perovskite nanocrystalline films with clonable micro-profile and unclonable micro-texture are prepared by laser engraving for lyophilic patterning, liquid strip sliding for high throughput droplet generation, and evaporative self-assembling for thin film deposition. A variety of crystal film profile shapes can be used as "specificator" for image recognition, and the verification time of recognition technology based on this divide-and-conquer strategy can be decreased by more than 20 times.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article