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Energy transfer mechanism from Gd
3+
to Sm
3+
in K
3+
Gd(PO
4
)
2
:Sm
3+
phosphor
Palvi Gupta
, A. K. Bedyal
, Vinay Kumar
, Y. Khajuria
, Vishal Sharma
, O. M. Ntwaeaborwa
, H. C. Swart
Shri Mata Vaishno Devi University
University of The Free State
Panjab University
Research output
:
Contribution to journal
›
Article
›
peer-review
57
Citations (Scopus)
Overview
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Dive into the research topics of 'Energy transfer mechanism from Gd
3+
to Sm
3+
in K
3+
Gd(PO
4
)
2
:Sm
3+
phosphor'. Together they form a unique fingerprint.
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Weight
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Engineering
Energy Engineering
100%
Activator
50%
H-Model
25%
Ray Diffraction
25%
Luminescence Property
25%
Mols
25%
Diffuse Reflectance
25%
Phase Formation
25%
Ion Concentration
25%
Transfer Process
25%
Critical Distance
25%
Decay of Spectrum
25%
Material Science
Transfer Process
100%
Luminescence
100%
Diffuse Reflectance Spectroscopy
100%
Samarium
100%
Chemistry
Energy Transfer
100%
Transfer Process
25%
Lanthanoid Atom
25%
Diffuse Reflectance Spectroscopy
25%
Fluorescence Decay
25%
Samarium
25%
Keyphrases
Formation Properties
33%
Energy Transfer Effect
33%
Inokuti-Hirayama
33%
IH Model
33%
Trivalent Samarium
33%
Energy Transfer Efficiency
33%
Chemical Engineering
Samarium
100%