articleTop 1% cited
Absolute quantum yield measurements of colloidal NaYF4: Er3+, Yb3+ upconverting nanoparticles
Nanoscale · 2010 · Vol. 2(8) · pp. 1417–1417
John‐Christopher Boyer(University of Victoria)Frank C. J. M. van Veggel✉(University of Victoria)
Abstract
In this communication we describe a technique for measuring the absolute quantum yields (QYs) of upconverting nanomaterials based on the use of a commercially available fluorimeter and an integrating sphere. Using this setup, we have successfully acquired luminescence efficiency data (pump laser, absorbed pump, and visible emitted intensities) for lanthanide-doped upconverting nanoparticles. QYs in the range of 0.005% to 0.3% were measured for several NaYF(4): 2% Er(3+), 20% Yb(3+) nanoparticles with particle sizes ranging from 10 to 100 nm while a QY of 3% was measured for a bulk sample.
Luminescence Properties of Advanced MaterialsSolid State Laser TechnologiesRadiation Detection and Scintillator TechnologiesIntegrating sphereQuantum yieldLanthanideNanoparticleNanomaterialsMaterials scienceLuminescenceFluorometerLaserMicrometer
MeSH terms
ErbiumFluoridesFluorometryParticle SizeQuantum TheoryYtterbiumYttriumNanoparticles
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Upconverting Nanoparticles
Angewandte Chemie International Edition · 2011 · 2,437 citations
References
Highly Uniform and Monodisperse β-NaYF<sub>4</sub>:Ln<sup>3+</sup> (Ln = Eu, Tb, Yb/Er, and Yb/Tm) Hexagonal Microprism Crystals: Hydrothermal Synthesis and Luminescent Properties
Inorganic Chemistry · 2007 · 472 citations
Hexagonal Sodium Yttrium Fluoride Based Green and Blue Emitting Upconversion Phosphors
Chemistry of Materials · 2004 · 1,159 citations
An improved experimental determination of external photoluminescence quantum efficiency
Advanced Materials · 1997 · 1,998 citations
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