4.3 Article

Flash Nanoprecipitation Offers Large-Format Full-Color and Dual-Mode Fluorescence Patterns for Codes-in-Code Encryption and Anti-Counterfeiting

Journal

ADVANCED PHOTONICS RESEARCH
Volume 3, Issue 11, Pages -

Publisher

WILEY
DOI: 10.1002/adpr.202200091

Keywords

dual-mode anti-counterfeiting; flash nanoprecipitation; full-color fluorescent; large-format inkjet printing

Funding

  1. Shenzhen Science and Technology Planning Project [JCYJ20180507183224565]
  2. Shenzhen Peacock Group [KQTD20170809110344233]
  3. Shenzhen Science and Technology RD Fund [JSGG20201102165602006]

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A universal procedure for fast-fabricating fluorescent nanoparticles for anti-counterfeiting applications is reported. The large-format fluorescent patterns produced using this method exhibit high concealment and environmental durability for daily use.
Fluorescent materials are used broadly for anti-counterfeiting, including currency, passports, identity cards, and other secure documents. However, a universal procedure to print fluorescent materials is still missing due to the wide variety of properties found in fluorescent materials. Here, flash nanoprecipitation (FNP) is reported as a universal procedure for fast-fabricating large-scale fluorescent nanoparticles to construct cutting-edge-level encryption in anti-counterfeiting, such as full-color and dual-mode codes-in-code large-format fluorescent patterns. The large-format fluorescent patterns are printed with a commercial inkjet printer. They exhibitd high concealment and environmental durability for daily use. The security labels of the 2021 Chinese Racing Pigeon Association (CRPA) certificate are then industrially fabricated based on this universal procedure. The monochrome fluorescent pattern is also upgraded into a full-color fluorescent pattern for evolutionary encryption and anti-counterfeiting. Finally, a codes-in-code dual-mode encryption is realized in the UV bands. The results lead to cutting-edge and high-security anti-counterfeiting technology, which will broaden the use of fluorescent materials in anti-counterfeiting due to its universality.

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