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Broadband NIR photostimulated luminescence nanoprobes based on CaS:Eu(2+),Sm(3+) nanocrystals

Near-infrared (NIR) photostimulated luminescence (PSL) nanocrystals (NCs) have recently evoked considerable interest in the field of biomedicine, but are currently limited by the controlled synthesis of efficient PSL NCs. Herein, we report for the first time the controlled synthesis of CaS:Eu(2+),Sm...

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Autores principales: Gao, Yu, Li, Renfu, Zheng, Wei, Shang, Xiaoying, Wei, Jiaojiao, Zhang, Meiran, Xu, Jin, You, Wenwu, Chen, Zhuo, Chen, Xueyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6552487/
https://www.ncbi.nlm.nih.gov/pubmed/31293727
http://dx.doi.org/10.1039/c9sc01321k
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author Gao, Yu
Li, Renfu
Zheng, Wei
Shang, Xiaoying
Wei, Jiaojiao
Zhang, Meiran
Xu, Jin
You, Wenwu
Chen, Zhuo
Chen, Xueyuan
author_facet Gao, Yu
Li, Renfu
Zheng, Wei
Shang, Xiaoying
Wei, Jiaojiao
Zhang, Meiran
Xu, Jin
You, Wenwu
Chen, Zhuo
Chen, Xueyuan
author_sort Gao, Yu
collection PubMed
description Near-infrared (NIR) photostimulated luminescence (PSL) nanocrystals (NCs) have recently evoked considerable interest in the field of biomedicine, but are currently limited by the controlled synthesis of efficient PSL NCs. Herein, we report for the first time the controlled synthesis of CaS:Eu(2+),Sm(3+) NIR PSL NCs through a high-temperature co-precipitation method. The role of Sm(3+) co-doping and the effect of thermal annealing on the optical properties of the NCs as well as the charging and discharging processes, the trap depth distribution, and the underlying PSL mechanism are comprehensively surveyed by means of photoluminescence, persistent luminescence, thermoluminescence, and PSL spectroscopies. The as-prepared NCs exhibit intense PSL of Eu(2+) at 650 nm with a fast response to stimulation in a broad NIR region from 800 nm to 1600 nm, a duration time longer than 2 h, and an extremely low power density threshold down to 10 mW cm(–2) at 980 nm. Furthermore, by taking advantage of the intense NIR PSL, we demonstrate the application of CaS:Eu(2+),Sm(3+) NCs as sensitive luminescent nanoprobes for biotin receptor-targeted cancer cell imaging. These results reveal the great promise of CaS:Eu(2+),Sm(3+) nanoprobes for autofluorescence-free bioimaging, and also lay the foundation for future design of efficient NIR PSL nanoprobes towards versatile bioapplications.
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spelling pubmed-65524872019-07-10 Broadband NIR photostimulated luminescence nanoprobes based on CaS:Eu(2+),Sm(3+) nanocrystals Gao, Yu Li, Renfu Zheng, Wei Shang, Xiaoying Wei, Jiaojiao Zhang, Meiran Xu, Jin You, Wenwu Chen, Zhuo Chen, Xueyuan Chem Sci Chemistry Near-infrared (NIR) photostimulated luminescence (PSL) nanocrystals (NCs) have recently evoked considerable interest in the field of biomedicine, but are currently limited by the controlled synthesis of efficient PSL NCs. Herein, we report for the first time the controlled synthesis of CaS:Eu(2+),Sm(3+) NIR PSL NCs through a high-temperature co-precipitation method. The role of Sm(3+) co-doping and the effect of thermal annealing on the optical properties of the NCs as well as the charging and discharging processes, the trap depth distribution, and the underlying PSL mechanism are comprehensively surveyed by means of photoluminescence, persistent luminescence, thermoluminescence, and PSL spectroscopies. The as-prepared NCs exhibit intense PSL of Eu(2+) at 650 nm with a fast response to stimulation in a broad NIR region from 800 nm to 1600 nm, a duration time longer than 2 h, and an extremely low power density threshold down to 10 mW cm(–2) at 980 nm. Furthermore, by taking advantage of the intense NIR PSL, we demonstrate the application of CaS:Eu(2+),Sm(3+) NCs as sensitive luminescent nanoprobes for biotin receptor-targeted cancer cell imaging. These results reveal the great promise of CaS:Eu(2+),Sm(3+) nanoprobes for autofluorescence-free bioimaging, and also lay the foundation for future design of efficient NIR PSL nanoprobes towards versatile bioapplications. Royal Society of Chemistry 2019-05-10 /pmc/articles/PMC6552487/ /pubmed/31293727 http://dx.doi.org/10.1039/c9sc01321k Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Gao, Yu
Li, Renfu
Zheng, Wei
Shang, Xiaoying
Wei, Jiaojiao
Zhang, Meiran
Xu, Jin
You, Wenwu
Chen, Zhuo
Chen, Xueyuan
Broadband NIR photostimulated luminescence nanoprobes based on CaS:Eu(2+),Sm(3+) nanocrystals
title Broadband NIR photostimulated luminescence nanoprobes based on CaS:Eu(2+),Sm(3+) nanocrystals
title_full Broadband NIR photostimulated luminescence nanoprobes based on CaS:Eu(2+),Sm(3+) nanocrystals
title_fullStr Broadband NIR photostimulated luminescence nanoprobes based on CaS:Eu(2+),Sm(3+) nanocrystals
title_full_unstemmed Broadband NIR photostimulated luminescence nanoprobes based on CaS:Eu(2+),Sm(3+) nanocrystals
title_short Broadband NIR photostimulated luminescence nanoprobes based on CaS:Eu(2+),Sm(3+) nanocrystals
title_sort broadband nir photostimulated luminescence nanoprobes based on cas:eu(2+),sm(3+) nanocrystals
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6552487/
https://www.ncbi.nlm.nih.gov/pubmed/31293727
http://dx.doi.org/10.1039/c9sc01321k
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