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Low-temperature open-air synthesis of PVP-coated NaYF4:Yb,Er,Mn upconversion nanoparticles with strong red emission

MacKenzie, Lewis E.; Alvarez-Ruiz, Diana; Pal, Robert

Low-temperature open-air synthesis of PVP-coated NaYF4:Yb,Er,Mn upconversion nanoparticles with strong red emission Thumbnail


Authors

Lewis E. MacKenzie

Diana Alvarez-Ruiz



Abstract

Cubic (α-phase) NaYF4:Yb,Er upconversion nanoparticles (UCNPs) are uniquely suited to biophotonics and biosensing applications due to their near-infrared excitation and visible red emission (λex approx. 660 nm), enabling detection via thick overlying tissue with no bio-autofluorescence. However, UCNP synthesis typically requires high temperatures in combination with either high pressure reaction vessels or an inert atmosphere. Here, we report synthesis of α-phase NaYF4:Yb,Er,Mn UCNPs via the considerably more convenient PVP40-mediated route; a strategy that requires modest temperatures and relatively short reaction time (160°C, 2 h) in open air, with Mn2+ co-doping serving to greatly enhance red emission. The optimal Mn2+ co-doping level was found to be 35 mol %, which decreased the average maximum UCNP Feret diameter from 42 ± 11 to 36 ± 15 nm; reduced the crystal lattice parameter, a, from 5.52 to 5.45 Å; and greatly enhanced UCNP red/green emission ratio in EtOH by a factor of 5.6. The PVP40 coating enabled dispersal in water and organic solvents and can be exploited for further surface modification (e.g. silica shell formation). We anticipate that this straightforward UCNP synthesis method for producing strongly red-emitting UCNPs will be particularly beneficial for deep tissue biophotonics and biosensing applications.

Citation

MacKenzie, L. E., Alvarez-Ruiz, D., & Pal, R. (2022). Low-temperature open-air synthesis of PVP-coated NaYF4:Yb,Er,Mn upconversion nanoparticles with strong red emission. Royal Society Open Science, 9(1), https://doi.org/10.1098/rsos.211508

Journal Article Type Article
Acceptance Date Nov 3, 2021
Online Publication Date Jan 19, 2022
Publication Date 2022
Deposit Date Feb 21, 2022
Publicly Available Date Feb 21, 2022
Journal Royal Society Open Science
Electronic ISSN 2054-5703
Publisher The Royal Society
Peer Reviewed Peer Reviewed
Volume 9
Issue 1
DOI https://doi.org/10.1098/rsos.211508
Public URL https://durham-repository.worktribe.com/output/1213348
Related Public URLs https://strathprints.strath.ac.uk/79193/

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