volume 54 issue 4 pages 1800172

Nanoengineered Gd3 Al2 Ga3 O12 Scintillation Materials with Disordered Garnet Structure for Novel Detectors of Ionizing Radiation

M Korzhik 1, 2
Vladimir Alenkov 3
O. A. Buzanov 3
Andréi Fedorov 4
Larisa Grigorjeva 5
Vitaliy Mechinsky 1
Yauhen Tratsiak 1
Aleksejs Zolotarjovs 5
Valery Dormenev 6
Aleksei Dosovitskiy 7
Devesh Agrawal 8
Toyli Anniyev 8
Maxim Vasilyev 8
Valery N. Khabashesku 8
3
 
Fomos Crystals; Moscow 107023 Russia
4
 
Radiation Instruments and New Components; Minsk 220036 Belarus
5
 
Institute of Solid State Physics; Latvian University; Riga LV-1063 Latvia
7
 
NeoChem; Moscow 121069 Russia
8
 
Baker Hughes a GE Company; Houston 77040 TX USA
Publication typeJournal Article
Publication date2019-03-06
scimago Q3
wos Q3
SJR0.370
CiteScore2.6
Impact factor1.9
ISSN02321300, 15214079
General Chemistry
Condensed Matter Physics
General Materials Science
Abstract
The search for engineering approaches to improve the scintillation properties of Gd3Al2Ga3O12 crystals and enable their production technology is of current interest. This crystal, while doped with Ce, is considered a good multi-purpose scintillation material for detecting gamma-quanta and neutrons. It is observed that co-doping with Mg affected intrinsic defects in the crystal structure that create shallow electronic traps. Other point structure defects, which are based on local variations of the crystal stoichiometry, are significantly diminished by use of a co-precipitated raw material. Nano-structuring of the raw material enables production of a homogeneous precursor mixture for growing a crystal with minimal evaporation of Ga from the melt. The demonstrated nano-engineering approach increased the light yield from the crystal by approximately 20%, enabling its applications in well logging.
Found 
Found 

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Korzhik M. et al. Nanoengineered Gd3 Al2 Ga3 O12 Scintillation Materials with Disordered Garnet Structure for Novel Detectors of Ionizing Radiation // Crystal Research and Technology. 2019. Vol. 54. No. 4. p. 1800172.
GOST all authors (up to 50) Copy
Korzhik M., Alenkov V., Buzanov O. A., Fedorov A., Dosovitskiy G., Grigorjeva L., Mechinsky V., Sokolov P., Tratsiak Y., Zolotarjovs A., Dormenev V., Dosovitskiy A., Agrawal D., Anniyev T., Vasilyev M., Khabashesku V. N. Nanoengineered Gd3 Al2 Ga3 O12 Scintillation Materials with Disordered Garnet Structure for Novel Detectors of Ionizing Radiation // Crystal Research and Technology. 2019. Vol. 54. No. 4. p. 1800172.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1002/crat.201800172
UR - https://doi.org/10.1002/crat.201800172
TI - Nanoengineered Gd3 Al2 Ga3 O12 Scintillation Materials with Disordered Garnet Structure for Novel Detectors of Ionizing Radiation
T2 - Crystal Research and Technology
AU - Korzhik, M
AU - Alenkov, Vladimir
AU - Buzanov, O. A.
AU - Fedorov, Andréi
AU - Dosovitskiy, G
AU - Grigorjeva, Larisa
AU - Mechinsky, Vitaliy
AU - Sokolov, Peter
AU - Tratsiak, Yauhen
AU - Zolotarjovs, Aleksejs
AU - Dormenev, Valery
AU - Dosovitskiy, Aleksei
AU - Agrawal, Devesh
AU - Anniyev, Toyli
AU - Vasilyev, Maxim
AU - Khabashesku, Valery N.
PY - 2019
DA - 2019/03/06
PB - Wiley
SP - 1800172
IS - 4
VL - 54
SN - 0232-1300
SN - 1521-4079
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2019_Korzhik,
author = {M Korzhik and Vladimir Alenkov and O. A. Buzanov and Andréi Fedorov and G Dosovitskiy and Larisa Grigorjeva and Vitaliy Mechinsky and Peter Sokolov and Yauhen Tratsiak and Aleksejs Zolotarjovs and Valery Dormenev and Aleksei Dosovitskiy and Devesh Agrawal and Toyli Anniyev and Maxim Vasilyev and Valery N. Khabashesku},
title = {Nanoengineered Gd3 Al2 Ga3 O12 Scintillation Materials with Disordered Garnet Structure for Novel Detectors of Ionizing Radiation},
journal = {Crystal Research and Technology},
year = {2019},
volume = {54},
publisher = {Wiley},
month = {mar},
url = {https://doi.org/10.1002/crat.201800172},
number = {4},
pages = {1800172},
doi = {10.1002/crat.201800172}
}
MLA
Cite this
MLA Copy
Korzhik, M., et al. “Nanoengineered Gd3 Al2 Ga3 O12 Scintillation Materials with Disordered Garnet Structure for Novel Detectors of Ionizing Radiation.” Crystal Research and Technology, vol. 54, no. 4, Mar. 2019, p. 1800172. https://doi.org/10.1002/crat.201800172.