Issue 10, 2022

Racemized photonic crystals for physical unclonable function

Abstract

As Internet of Things-based technologies continue to digitalize our society, the development of secure and robust identification systems against evolving adversaries remains a grave challenge. Recently, physical unclonable functions (PUFs) have garnered tremendous scientific interest due to their intrinsic randomness, which makes them difficult to counterfeit. Herein, we present a facile approach for fabricating optical PUFs using spontaneous mirror symmetry breaking of molecular self-assembly. The PUF composed of racemic helical structures that generate chiroptical signals exhibits high encoding capacity (∼1013 000), precise recognition rate, and impressive reconfigurability. The present study demonstrates that the utilization of random symmetry breaking is a promising approach to the design of high-level security systems.

Graphical abstract: Racemized photonic crystals for physical unclonable function

Supplementary files

Article information

Article type
Communication
Submitted
08 Jun 2022
Accepted
08 Aug 2022
First published
09 Aug 2022

Mater. Horiz., 2022,9, 2542-2550

Racemized photonic crystals for physical unclonable function

G. Park, H. Park, J. M. Wolska, J. G. Park and D. K. Yoon, Mater. Horiz., 2022, 9, 2542 DOI: 10.1039/D2MH00710J

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