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基于非确定性分布的染料掺杂光纤和微滴的柔性物理不可克隆函数

Flexible Physical Unclonable Functions Based on Non-deterministically Distributed Dye-Doped Fibers and Droplets.

作者信息

Bruno Mauro Daniel Luigi, Lio Giuseppe Emanuele, Ferraro Antonio, Nocentini Sara, Papuzzo Giuseppe, Forestiero Agostino, Desiderio Giovanni, De Santo Maria Penelope, Wiersma Diederik Sybolt, Caputo Roberto, Golemme Giovanni, Riboli Francesco, Barberi Riccardo Cristoforo

机构信息

Physics Department, University of Calabria, Rende 87036, CS, Italy.

Consiglio Nazionale delle Ricerche - Istituto di Nanotecnologia (CNR-Nanotec), Rende 87036, CS, Italy.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 17;16(28):37063-37072. doi: 10.1021/acsami.4c07021. Epub 2024 Jul 7.

DOI:10.1021/acsami.4c07021
PMID:38972004
Abstract

The development of new anticounterfeiting solutions is a constant challenge and involves several research fields. Much interest is currently devoted to systems that are impossible to clone, based on the physical unclonable function (PUF) paradigm. In this work, a new strategy based on electrospinning and electrospraying of dye-doped polymeric materials is presented for the manufacturing of flexible free-standing films that embed simultaneously different PUF keys. The proposed films can be used to fabricate novel anticounterfeiting labels having three encryption levels: (i) a map of fluorescent polymer droplets, with random positions on a dense yarn of polymer nanofibers, (ii) a characteristic fluorescence spectrum for each label, and (iii) the unique speckle patterns that every label produces when illuminated with coherent laser light shaped in different wavefronts. The intrinsic uniqueness introduced by the manufacturing process encodes enough complexity into the optical anticounterfeiting tag to generate thousands of cryptographic keys. The simple and cheap fabrication process as well as multilevel authentication makes such colored polymeric unclonable tags a practical solution in the secure protection of goods in our daily life.

摘要

开发新的防伪解决方案是一项持续的挑战,涉及多个研究领域。目前,基于物理不可克隆功能(PUF)范式的不可克隆系统备受关注。在这项工作中,提出了一种基于对掺杂染料的聚合物材料进行静电纺丝和电喷雾的新策略,用于制造同时嵌入不同PUF密钥的柔性独立薄膜。所提出的薄膜可用于制造具有三个加密级别的新型防伪标签:(i)荧光聚合物液滴的图谱,其在聚合物纳米纤维的致密纱线上具有随机位置;(ii)每个标签的特征荧光光谱;(iii)每个标签在用不同波前整形的相干激光照射时产生的独特散斑图案。制造过程引入的内在唯一性将足够的复杂性编码到光学防伪标签中,以生成数千个加密密钥。简单廉价的制造工艺以及多级认证使得这种彩色聚合物不可克隆标签成为我们日常生活中商品安全保护的实用解决方案。

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