Manganese Clusterization in ZnS:Mn, Mg Synthesized by Self-Propagating High-Temperature Synthesis

dc.contributor.authorBacherikova, Yu. Yu.
dc.contributor.authorVorona, I. P.
dc.contributor.authorOkhrimenko, O. B.
dc.contributor.authorKladko, V. P.
dc.contributor.authorZhuk, A. G.
dc.contributor.authorOkulov, S. M.
dc.contributor.authorPolishchuk, Yu. O.
dc.contributor.authorGilchukb, A. V.
dc.contributor.authorRomanenko, Yu. M.
dc.contributor.authorKidalov, V. V.
dc.date.accessioned2021-01-26T07:11:24Z
dc.date.available2021-01-26T07:11:24Z
dc.date.issued2020
dc.description.abstractThe ZnS:Mn, Mg powder is fabricated by self-propagating high-temperature synthesis with the simultaneous introduction of Mn and Mg impurities. It is found that the simultaneous introduction of Mn and Mg impurities leads to the nonuniform distribution of manganese forming regions with a lower and higher Mn concentration. In the latter case, the manganese ions form paramagnetic clusters. At the same time, numerous centers of self-activated luminescence form in the synthesized ZnS:Mn, Mg due to mechanical stress and lattice strain. Additional annealing leads to a more uniform Mn distribution in the formed ZnS:Mn, Mg phosphor, which is accompanied by an increase in the intensity of the manganese photoluminescence band and quenching of the self-activated luminescence band.uk
dc.identifier.urihttp://elar.tsatu.edu.ua/handle/123456789/12884
dc.language.isoenuk
dc.relation.ispartofseriesSemiconductors;Vol. 54, No. 3 (P. 330-336)
dc.subjectself-propagating high-temperature synthesisuk
dc.subjectZnS:Mnuk
dc.subjectMguk
dc.subjectphotoluminescenceuk
dc.subjectscanning electron microscopyuk
dc.subjectelectron paramagnetic resonanceuk
dc.subjectannealinguk
dc.titleManganese Clusterization in ZnS:Mn, Mg Synthesized by Self-Propagating High-Temperature Synthesisuk
dc.typeArticleuk

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