K(Sr1−xEux)2Cl5 scintillation material obtained using Eu2O3 dissolution in the growth chloride melt
Autor: | S. N. Galkin, Oleg Ivanovych Yurchenko, Victor L. Cherginets, Ya. A. Boyarintseva, T. V. Ponomarenko, V.Yu. Pedash, N.V. Rebrova, T.P. Rebrova, A.L. Rebrov, T.E. Gorbacheva |
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Rok vydání: | 2020 |
Předmět: |
010302 applied physics
Scintillation Materials science Analytical chemistry Halide 02 engineering and technology 021001 nanoscience & nanotechnology Condensed Matter Physics 01 natural sciences Chloride law.invention Inorganic Chemistry law Yield (chemistry) 0103 physical sciences Materials Chemistry medicine Crystallization 0210 nano-technology Luminescence Dissolution Solid solution medicine.drug |
Zdroj: | Journal of Crystal Growth. 543:125706 |
ISSN: | 0022-0248 |
DOI: | 10.1016/j.jcrysgro.2020.125706 |
Popis: | The peculiarities of direct incorporation of Eu2+ (via Eu2O3) in KCl-SrCl2 (1:1.99) melt for the growth of Eu2+-activated scintillation material of K(Sr0.995Eu0.005)2Cl5 composition were studied. When added to the chloride melt at 973 K Eu2O3 starts to transform into EuOCl immediately and the process is essentially incomplete. The complete dissolution of Eu oxocompounds (Eu2O3, EuOCl) in the melt was provided by the application of the carbochlorination process (the action of CCl4 vapor) which is a special case of the reactive atmosphere processing (RAP). A scintillation material of K(Sr0.995Eu0.005)2Cl5 composition was grown from the obtained melt with an application of the Bridgman technique. The boule included long opaque end sections and transparent medium section with the composition of K(Sr0.995Eu0.005)2Cl5. The luminescence studies of the obtained samples confirmed coexistence of both Eu2+ and Eu3+ in the growth melt. The non-isomorphic Eu3+ is displaced to the top section of the boule as a result of directional crystallization. An amount of KI was added to the growth melt to provide complete reduction of Eu3+ into Eu2+. Scintillation parameters of all the obtained crystals are close: the relative light yield values are ca.70% vs. NaI:Tl and the energy resolution is within 8–9%. |
Databáze: | OpenAIRE |
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