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Multi-mode structural-color anti-counterfeiting labels based on physically unclonable amorphous photonic structures with convenient artificial intelligence authentication

The first physically unclonable anti-counterfeiting label based on structural colors was enabled by interfacing amorphous photonic structures with artificial intelligence. The showing of the structural colors by water, the unique spectra shifts and the artificial-intelligence decodable amorphous arr...

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Published in:Journal of materials chemistry. C, Materials for optical and electronic devices Materials for optical and electronic devices, 2019, Vol.7 (45), p.1469-1474
Main Authors: He, Xueying, Gu, Yanan, Yu, Borong, Liu, Zhiwei, Zhu, Kuan, Wu, Na, Zhao, Xu, Wei, Yu, Zhou, Jinming, Song, Yanlin
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container_end_page 1474
container_issue 45
container_start_page 1469
container_title Journal of materials chemistry. C, Materials for optical and electronic devices
container_volume 7
creator He, Xueying
Gu, Yanan
Yu, Borong
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Zhao, Xu
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Zhou, Jinming
Song, Yanlin
description The first physically unclonable anti-counterfeiting label based on structural colors was enabled by interfacing amorphous photonic structures with artificial intelligence. The showing of the structural colors by water, the unique spectra shifts and the artificial-intelligence decodable amorphous arrangements constituted three-level security functions, which add a new dimension to current anti-counterfeiting technology. The first physically unclonable anti-counterfeiting label based on structural colors was enabled by interfacing amorphous photonic structures with artificial intelligence.
doi_str_mv 10.1039/c9tc05291g
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2050-7534
language eng
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source Royal Society of Chemistry
subjects Amorphous structure
Artificial intelligence
Counterfeiting
Photonics
title Multi-mode structural-color anti-counterfeiting labels based on physically unclonable amorphous photonic structures with convenient artificial intelligence authentication
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