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Persistent luminescence of zinc gallogermanates
Celina Matuszewska
, Tomasz W. Pańczuk
, Peter A. Tanner
*
, Ka Leung Wong
*
*
Corresponding author for this work
Department of Chemistry
Research output
:
Contribution to journal
›
Journal article
›
peer-review
9
Citations (Scopus)
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Engineering
Tunnel Construction
100%
Room Temperature
100%
Delay Time
100%
Oxygen Vacancy
50%
Measured Value
50%
Spectral Range
50%
Temperature Dependence
50%
Variable Power
50%
Dose Rate
50%
Increasing Temperature
50%
Keyphrases
Persistent Luminescence
100%
Zinc Gallogermanate
100%
Luminescence Decay
37%
Room Temperature
25%
Power Law
25%
Tunneling
25%
Delay Time
25%
Emission Centers
25%
Maximum Performance
12%
Power Indices
12%
Low Dose Rate
12%
Photoluminescence
12%
Temperature Effect
12%
Photosensitizer
12%
Increased Temperature
12%
Oxygen Vacancy
12%
Ultra-low Dose
12%
Decay Curves
12%
Irradiation
12%
Continuous Distribution
12%
Spectral Range
12%
Luminescence Spectra
12%
Irradiation Time
12%
Average Lifetime
12%
Hyperbolic Functions
12%
Deconvoluted
12%
Bi-exponential
12%
Radiation Energy
12%
Trap Depth
12%
Variable Power
12%
Zinc Depletion
12%
Chemistry
Ambient Reaction Temperature
100%
Photoluminescence
50%
Oxygen Vacancy
50%
Luminiscence Spectrum
50%
Physics
Room Temperature
100%
Photoluminescence
50%
Oxygen Vacancy
50%
Temperature Dependence
50%
Earth and Planetary Sciences
Emissions
100%
Power Law
28%
Room Temperature
28%
Photoluminescence
14%
Material Science
Luminescence
100%
Photoluminescence
12%
Oxygen Vacancy
12%
Photosensitizer
12%