Enhancing upconversion via constructing local energy cluster in lanthanide doped fluoride nanoparticles
Publication type: Journal Article
Publication date: 2023-08-29
scimago Q1
wos Q1
SJR: 1.220
CiteScore: 9.3
Impact factor: 5.1
ISSN: 20507526, 20507534
Materials Chemistry
General Chemistry
Abstract
Upconversion (UC) nanoparticles (NPs) have gained significant attention in many fields, such as super resolution nanoscopy and background-free bioimaging. UC efficiency is one of the most important parameters in these practical applications. However, enhancing the UC efficiency of core-only NPs synthesized in a single step, without the need for additional post-processing, has remained a great challenge. In this study, we propose an effective strategy for significantly enhancing the UC intensity by constructing local energy clusters within the lanthanide-doped fluoride NPs. By introducing local energy clusters within the NaGdF4 crystal lattice, the optimal Er3+, Ho3+ and Tm3+ doping concentrations were increased to 8 mol%, 8 mol%, and 2 mol%, respectively. The UC intensity of the 20Yb/8Er/20Ca:NaGdF4 NPs is approximately 54.3 times higher than that of typical 20Yb/2Er:NaGdF4 NPs, which is attributed to the increased energy transfer efficiency from Yb3+ to Er3+ and the reduced energy loss caused by surface vibrations. Moreover, with the formation of energy clusters within the crystal lattice, the temperature-dependent UC intensity behavior shifted from a negative thermal quenching effect to a positive thermal quenching effect, which results in enhanced temperature sensing performance. The violet UC from Tm3+ activators was significantly enhanced through the energy clusters, which facilitates the noticeable inter-particle energy migration UC of Tb3+ ions. Overall, our study presents a novel approach to significantly enhance the optimal doping concentrations of lanthanide activators and the UC intensities of NPs. These findings open up exciting opportunities for the development of high-performance UCNPs with improved applications in various fields.
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5
Total citations:
5
Citations from 2025:
2
(40%)
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Yang H. et al. Enhancing upconversion via constructing local energy cluster in lanthanide doped fluoride nanoparticles // Journal of Materials Chemistry C. 2023. Vol. 11. No. 38. pp. 12915-12921.
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Yang H., Zhang A., Guo H., LI D., Xu S., Lei L. Enhancing upconversion via constructing local energy cluster in lanthanide doped fluoride nanoparticles // Journal of Materials Chemistry C. 2023. Vol. 11. No. 38. pp. 12915-12921.
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TY - JOUR
DO - 10.1039/d3tc02494f
UR - https://xlink.rsc.org/?DOI=D3TC02494F
TI - Enhancing upconversion via constructing local energy cluster in lanthanide doped fluoride nanoparticles
T2 - Journal of Materials Chemistry C
AU - Yang, Haolin
AU - Zhang, Anshuo
AU - Guo, Hai
AU - LI, DENGHAO
AU - Xu, Shiqing
AU - Lei, Lei
PY - 2023
DA - 2023/08/29
PB - Royal Society of Chemistry (RSC)
SP - 12915-12921
IS - 38
VL - 11
SN - 2050-7526
SN - 2050-7534
ER -
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@article{2023_Yang,
author = {Haolin Yang and Anshuo Zhang and Hai Guo and DENGHAO LI and Shiqing Xu and Lei Lei},
title = {Enhancing upconversion via constructing local energy cluster in lanthanide doped fluoride nanoparticles},
journal = {Journal of Materials Chemistry C},
year = {2023},
volume = {11},
publisher = {Royal Society of Chemistry (RSC)},
month = {aug},
url = {https://xlink.rsc.org/?DOI=D3TC02494F},
number = {38},
pages = {12915--12921},
doi = {10.1039/d3tc02494f}
}
Cite this
MLA
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Yang, Haolin, et al. “Enhancing upconversion via constructing local energy cluster in lanthanide doped fluoride nanoparticles.” Journal of Materials Chemistry C, vol. 11, no. 38, Aug. 2023, pp. 12915-12921. https://xlink.rsc.org/?DOI=D3TC02494F.