Synthesis of Rare-Earth Nanomaterials Ag-Doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub> for In Vivo Imaging

In this study. a novel near-infrared fluorescent-driven contrast agent (Ag-doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub>) was synthesized using a coprecipitation-hydrot...

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Published in:Nanomaterials
Main Authors: Wei Zhang, Yang Zang, Yanli Lu, Jinghui Han, Qingyun Xiong, Jinping Xiong
Format: Article
Language:English
Published: MDPI AG 2022-02-01
Subjects:
Online Access:https://www.mdpi.com/2079-4991/12/5/728
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author Wei Zhang
Yang Zang
Yanli Lu
Jinghui Han
Qingyun Xiong
Jinping Xiong
author_facet Wei Zhang
Yang Zang
Yanli Lu
Jinghui Han
Qingyun Xiong
Jinping Xiong
author_sort Wei Zhang
collection DOAJ
container_title Nanomaterials
description In this study. a novel near-infrared fluorescent-driven contrast agent (Ag-doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub>) was synthesized using a coprecipitation-hydrothermal-solvothermal-solvothermal (CHSS) method. The results shows that hexagonal NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup> with a diameter of 300 nm was successfully synthesized by the CHSS method. The new contrast agent was characterized using scanning electron microscopy, fluorescence spectrometry, transmission electron microscopy, energy-dispersive spectrometry and ultraviolet-visible light diffuse reflectance absorption spectroscopy. Even at low concentrations (0.2 M), this proposed contrast agent can be excited by near-infrared light with a wavelength of 980 nm and emits a dazzling green light with a wavelength of 540 nm, and the comparison of the luminescence intensity proves that doping with silver increases the luminescence intensity of the upconverted nanomaterial by nearly 13 times based on the calculated quantum yield. TEM images show the successful preparation of silver nanoparticles with a diameter of 30 nm, and the energy spectrum shows the successful doping of silver nanoparticles and the successful preparation of the core-shell structure of NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub>. Furthermore, the mechanism of the increased luminous intensity has been studied using simulation calculations. Finally, cytotoxicity tests were used to test material which was modified by 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-[amino(polyethylene glycol)-2000] (DSPE-PEG<sub>2K</sub>), and the biocompatibility was significantly improved, meeting the standard for biological applications.
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spelling doaj-art-e82b1d30dfa3404e89ab92486fe5961e2025-08-19T22:55:19ZengMDPI AGNanomaterials2079-49912022-02-0112572810.3390/nano12050728Synthesis of Rare-Earth Nanomaterials Ag-Doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub> for In Vivo ImagingWei Zhang0Yang Zang1Yanli Lu2Jinghui Han3Qingyun Xiong4Jinping Xiong5Beijing Key Laboratory of Electrochemical Process and Technology of Materials, Beijing University of Chemical Technology, Beijing 100029, ChinaBeijing Key Laboratory of Electrochemical Process and Technology of Materials, Beijing University of Chemical Technology, Beijing 100029, ChinaBeijing Key Laboratory of Electrochemical Process and Technology of Materials, Beijing University of Chemical Technology, Beijing 100029, ChinaState Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, ChinaBeijing Key Laboratory of Electrochemical Process and Technology of Materials, Beijing University of Chemical Technology, Beijing 100029, ChinaBeijing Key Laboratory of Electrochemical Process and Technology of Materials, Beijing University of Chemical Technology, Beijing 100029, ChinaIn this study. a novel near-infrared fluorescent-driven contrast agent (Ag-doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub>) was synthesized using a coprecipitation-hydrothermal-solvothermal-solvothermal (CHSS) method. The results shows that hexagonal NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup> with a diameter of 300 nm was successfully synthesized by the CHSS method. The new contrast agent was characterized using scanning electron microscopy, fluorescence spectrometry, transmission electron microscopy, energy-dispersive spectrometry and ultraviolet-visible light diffuse reflectance absorption spectroscopy. Even at low concentrations (0.2 M), this proposed contrast agent can be excited by near-infrared light with a wavelength of 980 nm and emits a dazzling green light with a wavelength of 540 nm, and the comparison of the luminescence intensity proves that doping with silver increases the luminescence intensity of the upconverted nanomaterial by nearly 13 times based on the calculated quantum yield. TEM images show the successful preparation of silver nanoparticles with a diameter of 30 nm, and the energy spectrum shows the successful doping of silver nanoparticles and the successful preparation of the core-shell structure of NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub>. Furthermore, the mechanism of the increased luminous intensity has been studied using simulation calculations. Finally, cytotoxicity tests were used to test material which was modified by 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-[amino(polyethylene glycol)-2000] (DSPE-PEG<sub>2K</sub>), and the biocompatibility was significantly improved, meeting the standard for biological applications.https://www.mdpi.com/2079-4991/12/5/728upconversionnear-infraredintensityin vivo imaging
spellingShingle Wei Zhang
Yang Zang
Yanli Lu
Jinghui Han
Qingyun Xiong
Jinping Xiong
Synthesis of Rare-Earth Nanomaterials Ag-Doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub> for In Vivo Imaging
upconversion
near-infrared
intensity
in vivo imaging
title Synthesis of Rare-Earth Nanomaterials Ag-Doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub> for In Vivo Imaging
title_full Synthesis of Rare-Earth Nanomaterials Ag-Doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub> for In Vivo Imaging
title_fullStr Synthesis of Rare-Earth Nanomaterials Ag-Doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub> for In Vivo Imaging
title_full_unstemmed Synthesis of Rare-Earth Nanomaterials Ag-Doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub> for In Vivo Imaging
title_short Synthesis of Rare-Earth Nanomaterials Ag-Doped NaYF<sub>4</sub>:Yb<sup>3+</sup>/Er<sup>3+</sup>@NaYF<sub>4</sub>:Nd<sup>3+</sup>@NaGdF<sub>4</sub> for In Vivo Imaging
title_sort synthesis of rare earth nanomaterials ag doped nayf sub 4 sub yb sup 3 sup er sup 3 sup nayf sub 4 sub nd sup 3 sup nagdf sub 4 sub for in vivo imaging
topic upconversion
near-infrared
intensity
in vivo imaging
url https://www.mdpi.com/2079-4991/12/5/728
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