Related Experiment Video
Updated: Feb 5, 2026

Infrared Degenerate Four-wave Mixing with Upconversion Detection for Quantitative Gas Sensing
Published on: March 22, 2019
Measuring the internal quantum yield of upconversion luminescence for ytterbium-sensitized upconversion phosphors
P Stanley May1, Aravind Baride, Md Yeathad Hossan
1Department of Chemistry, University of South Dakota, Vermillion, SD 57069, USA. Stanley.May@usd.edu.
Abstract:
A method is presented for estimating the internal quantum yield (IQY) of NIR-to-NIR and NIR-to-visible upconversion (UC) luminescence for Yb3+-sensitized energy-transfer upconversion (ETU) phosphors. The method does not require an integrating sphere or a secondary standard, but rather uses the 1 μm emission of the Yb3+ sensitizer as an internal standard. The method requires the acquisition of the 1 μm emission decay curve of the UC phosphor using low pulse-energy density, an estimation of the radiative decay constant of the 1 μm emission, and emission spectra corrected for instrument response. This method is valid for UC emission spectra acquired via pulsed or continuous wave (cw) excitation. The method is demonstrated for cw excitation to obtain IQY for UC and downshifted luminescence for β-phase NaYF4: 0.5%Tm, 25%Yb and NaYF4: 2%Er, 18%Yb nanocrystals (with and without a passivating NaYF4 shell) over a range of excitation irradiance. The corresponding results are consistent with those obtained using integrating spheres and numerical simulations, respectively. For pulsed excitation, an additional alternative method is described which requires acquisition of the 1 μm emission decay curve at each excitation pulse-energy density for which the IQY is to be determined. The proposed methods should be particularly useful for samples having very low absorbance at the excitation wavelength, for which direct determination methods are impractical.
Related Concept Videos
Internal Energy
Internal Energy
Internal Receptors
International System of Units
Prefixes are used to define both larger and smaller quantities in the SI system. For example, milli, micro, and nano define smaller quantities, while kilo, mega, and giga are used to define...
Internal and External Forces
International Nursing Organizations I
ICN member organizations work to advance the field of nursing and healthcare via policies, partnerships, lobbying, professional...

