Binary temporal upconversion codes of Mn2+-activated nanoparticles for multilevel anti-counterfeiting

Luminescent materials that are capable of binary temporal coding are desirable for multilevel anti-counterfeiting. Here, the authors engineer nanoparticles that produce binary color codes on different timescales by combining the long-lived luminescence of Mn2+ with the relatively short-lived emissio...

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Autores principales: Xiaowang Liu, Yu Wang, Xiyan Li, Zhigao Yi, Renren Deng, Liangliang Liang, Xiaoji Xie, Daniel T. B. Loong, Shuyan Song, Dianyuan Fan, Angelo H. All, Hongjie Zhang, Ling Huang, Xiaogang Liu
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/1a94196e9dd34b1ab29b8c64b028df7f
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spelling oai:doaj.org-article:1a94196e9dd34b1ab29b8c64b028df7f2021-12-02T14:42:35ZBinary temporal upconversion codes of Mn2+-activated nanoparticles for multilevel anti-counterfeiting10.1038/s41467-017-00916-72041-1723https://doaj.org/article/1a94196e9dd34b1ab29b8c64b028df7f2017-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00916-7https://doaj.org/toc/2041-1723Luminescent materials that are capable of binary temporal coding are desirable for multilevel anti-counterfeiting. Here, the authors engineer nanoparticles that produce binary color codes on different timescales by combining the long-lived luminescence of Mn2+ with the relatively short-lived emission of lanthanides.Xiaowang LiuYu WangXiyan LiZhigao YiRenren DengLiangliang LiangXiaoji XieDaniel T. B. LoongShuyan SongDianyuan FanAngelo H. AllHongjie ZhangLing HuangXiaogang LiuNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiaowang Liu
Yu Wang
Xiyan Li
Zhigao Yi
Renren Deng
Liangliang Liang
Xiaoji Xie
Daniel T. B. Loong
Shuyan Song
Dianyuan Fan
Angelo H. All
Hongjie Zhang
Ling Huang
Xiaogang Liu
Binary temporal upconversion codes of Mn2+-activated nanoparticles for multilevel anti-counterfeiting
description Luminescent materials that are capable of binary temporal coding are desirable for multilevel anti-counterfeiting. Here, the authors engineer nanoparticles that produce binary color codes on different timescales by combining the long-lived luminescence of Mn2+ with the relatively short-lived emission of lanthanides.
format article
author Xiaowang Liu
Yu Wang
Xiyan Li
Zhigao Yi
Renren Deng
Liangliang Liang
Xiaoji Xie
Daniel T. B. Loong
Shuyan Song
Dianyuan Fan
Angelo H. All
Hongjie Zhang
Ling Huang
Xiaogang Liu
author_facet Xiaowang Liu
Yu Wang
Xiyan Li
Zhigao Yi
Renren Deng
Liangliang Liang
Xiaoji Xie
Daniel T. B. Loong
Shuyan Song
Dianyuan Fan
Angelo H. All
Hongjie Zhang
Ling Huang
Xiaogang Liu
author_sort Xiaowang Liu
title Binary temporal upconversion codes of Mn2+-activated nanoparticles for multilevel anti-counterfeiting
title_short Binary temporal upconversion codes of Mn2+-activated nanoparticles for multilevel anti-counterfeiting
title_full Binary temporal upconversion codes of Mn2+-activated nanoparticles for multilevel anti-counterfeiting
title_fullStr Binary temporal upconversion codes of Mn2+-activated nanoparticles for multilevel anti-counterfeiting
title_full_unstemmed Binary temporal upconversion codes of Mn2+-activated nanoparticles for multilevel anti-counterfeiting
title_sort binary temporal upconversion codes of mn2+-activated nanoparticles for multilevel anti-counterfeiting
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/1a94196e9dd34b1ab29b8c64b028df7f
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