Unpredictably Disordered Distribution of Hetero-Blended Graphene Oxide Flakes with Non-Identical Resistance in Physical Unclonable Functions

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초록

In this study, a new concept of physical unclonable functions (PUFs) is introduced comprising reduced graphene oxide (GO) materials. To create a disordered conductivity distribution, two types of GO are used: HGO, are produced by the conventional Hummers' method, and PGO, produced by Brodie's method with an additional unique purification procedure. It is found that PGO becomes graphene-like after room-temperature chemical reduction. These two reduced GOs have a distinct conductivity difference of up to 10(4) times. By blending these two materials, a random mixture is created that can generate a highly unpredictable electrical signal, serving as an ideal security key with strong randomness and uniqueness. The optimized PUF device, based on this approach, demonstrates excellent performance in generating secure keys.

키워드

digital fingerprints; hardware-based security; inter-hamming distance; physical unclonable function; reduced graphene oxide
제목
Unpredictably Disordered Distribution of Hetero-Blended Graphene Oxide Flakes with Non-Identical Resistance in Physical Unclonable Functions
저자
Lee, Subin; Choi, Seon Yeon; Jang, Byung Chul; Lee, Dong Hyun; Cho, Joon Young; Han, Joong Tark; Yoo, Hocheon; Kim, Hyun Ho
DOI
10.1002/adfm.202304432
발행일
2023-08-02
유형
Article; Early Access
저널명
Advanced Materials for Optics and Electronics