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Upconversion luminescence of Er
3+
/Yb
3+
doped Sr
5
(PO
4
)
3
OH phosphor powders
P. P. Mokoena
, H. C. Swart
, O. M. Ntwaeaborwa
University of The Free State
University of the Witwatersrand
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Citations (Scopus)
Overview
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Dive into the research topics of 'Upconversion luminescence of Er
3+
/Yb
3+
doped Sr
5
(PO
4
)
3
OH phosphor powders'. Together they form a unique fingerprint.
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Keyphrases
Chemical Composition Analysis
25%
Conversion Energy
25%
CRISTAL
25%
Diffraction
25%
Diffraction Pattern
25%
Energy Dispersive Spectrometer
25%
Energy Transfer
25%
Energy Transfer Mechanism
25%
Enhanced Red Emission
25%
Er3+
100%
Excitation Source
25%
Field Emission Scanning Electron Microscopy (FE-SEM)
50%
Hexagonal Structure
25%
Nanospheres
25%
NIR Laser
25%
Oxford
25%
Particle Morphology
25%
Phosphor Powder
100%
Powder Phosphors
25%
Sharp Peak
25%
Spectrometer
25%
Thermal Field Emission
25%
Upconversion
25%
Upconversion Emission
25%
Upconversion Luminescence
100%
Urea Combustion Method
25%
X-ray
25%
X-ray Diffraction Data
25%
Yb3+
100%
Material Science
Chemical Composition Analysis
50%
Crystal Structure
50%
Diffraction Pattern
50%
Hexagonal Structure
50%
Luminescence
100%
Nanosphere
50%
Particle Morphology
50%
Phosphor
100%
Scanning Electron Microscopy
100%
Urea
50%
X-Ray Diffraction
100%
Physics
Crystal Structure
50%
Detectors
50%
Diffraction Pattern
50%
Electron Microscope
100%
Energy Transfer
100%
Field Emission
100%
Nanosphere
50%
Phosphor
100%
X Ray Diffraction
100%
Chemistry
Crystal Structure
50%
Energy Transfer
100%
Field Emission
100%
formation
50%
Nanosphere
50%
Scanning Electron Microscopy
100%
Urea
50%
X-Ray Diffraction
100%
Chemical Engineering
Nanosphere
100%
Upconversion Luminescence
100%
Urea
100%