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Novel lanthanide nanoparticle frameworks for highly efficient photoluminescence and hypersensitive detection

Despite the excellent luminescent properties of lanthanide clusters (LnCs), their suprastructures that inherit their characteristic luminescent properties are scarcely reported. Herein, novel and highly luminescent suprastructures are synthesized via a two-step assembly method to incorporate LnCs in...

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Autores principales: Tong, Yuan-Jun, Yu, Lu-Dan, Li, Nan, Shen, Minhui, Peng, Xiaoru, Yang, Huangsheng, Ye, Yu-Xin, Zhu, Fang, Pawliszyn, Janusz, Xu, Jianqiao, Ouyang, Gangfeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9710216/
https://www.ncbi.nlm.nih.gov/pubmed/36544738
http://dx.doi.org/10.1039/d2sc05915k
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author Tong, Yuan-Jun
Yu, Lu-Dan
Li, Nan
Shen, Minhui
Peng, Xiaoru
Yang, Huangsheng
Ye, Yu-Xin
Zhu, Fang
Pawliszyn, Janusz
Xu, Jianqiao
Ouyang, Gangfeng
author_facet Tong, Yuan-Jun
Yu, Lu-Dan
Li, Nan
Shen, Minhui
Peng, Xiaoru
Yang, Huangsheng
Ye, Yu-Xin
Zhu, Fang
Pawliszyn, Janusz
Xu, Jianqiao
Ouyang, Gangfeng
author_sort Tong, Yuan-Jun
collection PubMed
description Despite the excellent luminescent properties of lanthanide clusters (LnCs), their suprastructures that inherit their characteristic luminescent properties are scarcely reported. Herein, novel and highly luminescent suprastructures are synthesized via a two-step assembly method to incorporate LnCs in covalent organic frameworks (COFs). COFs are pre-synthesized and decorated with rigid anchoring groups on their nanochannel walls, which provide one-dimensional confined spaces for the subsequent in situ assembly of luminescent LnCs. The confined LnCs are termed nanoparticles (NPs) to distinguish them from the pure LnCs. Secondary micropores with predictable sizes are successfully formed between the walls of the nanochannels and the orderly aligned NPs therein. By using a small organic ligand that can efficiently sensitize Ln(iii) cations in the assembly processes, the obtained composites show high quantum yields above 20%. The fluorescence can even be effectively maintained across nine pH units. The secondary micropores further enable the unambiguous discrimination of six methinehalides and ultrasensitive detection of uranyl ions. This study provides a new type of luminescent material that has potential for sensing and light emitting.
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spelling pubmed-97102162022-12-20 Novel lanthanide nanoparticle frameworks for highly efficient photoluminescence and hypersensitive detection Tong, Yuan-Jun Yu, Lu-Dan Li, Nan Shen, Minhui Peng, Xiaoru Yang, Huangsheng Ye, Yu-Xin Zhu, Fang Pawliszyn, Janusz Xu, Jianqiao Ouyang, Gangfeng Chem Sci Chemistry Despite the excellent luminescent properties of lanthanide clusters (LnCs), their suprastructures that inherit their characteristic luminescent properties are scarcely reported. Herein, novel and highly luminescent suprastructures are synthesized via a two-step assembly method to incorporate LnCs in covalent organic frameworks (COFs). COFs are pre-synthesized and decorated with rigid anchoring groups on their nanochannel walls, which provide one-dimensional confined spaces for the subsequent in situ assembly of luminescent LnCs. The confined LnCs are termed nanoparticles (NPs) to distinguish them from the pure LnCs. Secondary micropores with predictable sizes are successfully formed between the walls of the nanochannels and the orderly aligned NPs therein. By using a small organic ligand that can efficiently sensitize Ln(iii) cations in the assembly processes, the obtained composites show high quantum yields above 20%. The fluorescence can even be effectively maintained across nine pH units. The secondary micropores further enable the unambiguous discrimination of six methinehalides and ultrasensitive detection of uranyl ions. This study provides a new type of luminescent material that has potential for sensing and light emitting. The Royal Society of Chemistry 2022-11-18 /pmc/articles/PMC9710216/ /pubmed/36544738 http://dx.doi.org/10.1039/d2sc05915k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Tong, Yuan-Jun
Yu, Lu-Dan
Li, Nan
Shen, Minhui
Peng, Xiaoru
Yang, Huangsheng
Ye, Yu-Xin
Zhu, Fang
Pawliszyn, Janusz
Xu, Jianqiao
Ouyang, Gangfeng
Novel lanthanide nanoparticle frameworks for highly efficient photoluminescence and hypersensitive detection
title Novel lanthanide nanoparticle frameworks for highly efficient photoluminescence and hypersensitive detection
title_full Novel lanthanide nanoparticle frameworks for highly efficient photoluminescence and hypersensitive detection
title_fullStr Novel lanthanide nanoparticle frameworks for highly efficient photoluminescence and hypersensitive detection
title_full_unstemmed Novel lanthanide nanoparticle frameworks for highly efficient photoluminescence and hypersensitive detection
title_short Novel lanthanide nanoparticle frameworks for highly efficient photoluminescence and hypersensitive detection
title_sort novel lanthanide nanoparticle frameworks for highly efficient photoluminescence and hypersensitive detection
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9710216/
https://www.ncbi.nlm.nih.gov/pubmed/36544738
http://dx.doi.org/10.1039/d2sc05915k
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