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Synthesis of MAPbBr 3 -Polymer Composite Films by Photolysis of DMF: Towards Transparent and Flexible Optical Physical Unclonable Functions (PUFs) with Hierarchical Multilevel Complexity.

Duong Nguyen MinhLan Anh Thi NguyenQuynh H NguyenThanh Van VuJinwoo ChoiSangwon EomSeok Joon KwonYoungjong Kang
Published in: Advanced materials (Deerfield Beach, Fla.) (2022)
Physical entities with inherent randomness have been investigated as anti-counterfeiting labels based on physical unclonable functions (PUFs). Herein, we demonstrate a transparent and flexible optical PUF label associated with multilevel complexity by taking advantage of the optical properties of hierarchical morphologies of the composite film composed of metal halide perovskite nanoparticles (MAPbBr 3 NPs) and the intrinsic spinodal-decomposition-like phase separation of polymer blend (PMMA/PS blend). Due to the combinatorial effects of the photolysis synthesis of MAPbBr 3 and the thermodynamic instability of the PMMA/PS blend, randomized patterns emerge at two-level scales. These patterns are intrinsically non-deterministic, and therefore, the PUF labels from the multilevel random patterns are challenging to replicate. This is mainly attributed to random spot patterns (higher-level patterns) confined within intricate bicontinuous patterns (lower-level patterns). This article is protected by copyright. All rights reserved.
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