Перегляд за автором "Rebrova, T.P."

Сортувати за: Порядок: Результатів:

  • Rebrova, T.P.; Cherginets, V.L.; Ponomarenko, T.V.; Dolzhenko, Yu.I. (Functional Materials, 2008)
    The causes resulting in contamination of ionic halides with oxygen-containing admixtures at elevated temperatures and factors affecting the hydrolysis of those salts have been considered. The interaction of molten hygroscopic ...
  • Goriletsky, V.I.; Mitichkin, A.I.; Belenko, L.E.; Rebrova, T.P. (Semiconductor Physics Quantum Electronics & Optoelectronics, 2001)
    The IR absorption spectra of the KBr salt pellets of different purity and crystals grown of them were investigated in the region of 400…4000 cm⁻¹. It was found that by the IR spectra of the KBr salt pellets suitable for ...
  • Cherginets, V.L.; Datsko, Yu.N.; Grippa, A.Yu.; Ponomarenko, T.V.; Rebrova, N.V.; Rebrova, T.P.; Gorbacheva, T.E.; Lopin, A.V.; Trubaeva, O.G.; Pedash, V.Yu. (Functional Materials, 2015)
    Scintillation crystals based on BaBr₂-BaCl₂ solid solution corresponding to minimal melting point in the phase diagram doped with Eu²⁺ (from 0.3 to 3 mol. %) were grown by Bridgman-Stockbarger method. The X-ray luminescence ...
  • Datsko, Yu.N.; Rebrova, T.P.; Cherginets, V.L.; Naumenko, V.A.; Rebrov, A.L.; Mateychenko, P.V.; Vjunnik, I.N. (Functional Materials, 2016)
    Interaction of Zr getter with oxygen-containing admixtures being most abundant in molten alkali metal iodides (deoxidization) is studied. Reaction of Zr with oxide ions (in form of the corresponding alkali metal oxide) is ...
  • Boyarintsev, A.Yu.; Cherginets, V.L.; Ponomarenko, T.V.; Rebrova, T.P.; Varich, A.G.; Bryleva, E.Yu.; Koryakina, E.M.; Sheina, T.V.; Varchenko, V.V.; Yurchenko, O.I. (Functional Materials, 2017)
    Investigation of multiple low-temperature mixed crystallization (LTMC) of the solution wastes of cesium iodide was reported. LTMC is a very simple and convenient way for an essential decrease of the concentrations of ...
  • Cherginets, V.L.; Rebrova, T.P.; Datsko, Yu.N.; Goncharenko, V.F.; Belikov, K.N.; Kisil, E.N.; Dolzhenko, Yu.I.; Kosinov, N.N.; Voronkina, E.E. (Functional Materials, 2010)
  • Cherginets, V.L.; Ponomarenko, T.V.; Rebrova, T.P.; Varich, A.G.; Rebrov, A.L.; Datsko, Yu.N. (Functional Materials, 2018)
    Comparative analysis of CsI purification methods: mass crystallization with natural cooling (MC), low-temperature directed crystallization without stirring (LTDC/ws) and low-temperature mixed crystallization (LTMC) is ...
  • Cherginets, V.L.; Rebrova, T.P.; Ponomarenko, T.V.; Dolzhenko, Yu.I. (Functional Materials, 2011)
  • Cherginets, V.L.; Grippa, A.Yu.; Rebrova, T.P.; Datsko, Yu.N.; Ponomarenko, T.V.; Rebrova, N.V.; Kosinov, N.N.; Zelenskaya, O.V. (Functional Materials, 2012)
    CsSrBr₃ scintillation crystals doped with Eu²⁺ (0.5, 1 and 5 mol. %) have been grown by Bridgman-Stockbarger method. The radioluminescence spectra of CsSrBr₃:Eu²⁺ materials include a narrow band with the maximum which ...
  • Rebrova, N.V.; Cherginets, N.N.; Ponomarenko, T.V.; Rebrova, T.P.; Vjunnik, I.N.; Zelenskaya, O.V.; Kosinov, N.N. (Functional Materials, 2009)
    Single crystals of solid solutions Srl₂:Eu, Bal₂:Eu and BaₓSr₁₋ₓI₂:Eu with concentration of Eul₂ equal to 0.5 mol. % were grown by Bridgman-Stockbarger method. Addition of Bal₂ to Srl₂:Eu is found to cause arising two ...
  • Cherginets, V.L.; Grippa, A.Yu.; Rebrova, T.P.; Datsko, Yu.N.; Ponomarenko, T.V.; Rebrova, N.V.; Kosinov, N.N.; Tarasenko, O.A.; Dolzhenko, Yu.I.; Zelenskaya, O.V. (Functional Materials, 2012)
    Eu²⁺-doped CsSrCl₃ scintillation crystals with activator concentration 0.5, 1 and 5 mol. % and SrCl₂: Eu²⁺ material doped with 1 mol. % of the activator have been grown by Bridg-man-Stockbarger method. The radioluminescence ...
  • Cherginets, V.L.; Rebrova, T.P.; Datsko, Y.N.; Rebrov, A.L.; Mateychenko, P.V. (Functional Materials, 2016)
    The course of removal of oxide ion admixtures (deoxidization) from molten cesium iodide using galvanic couple zirconium-platinum at 973 K was studied by a potentiometric method using a membrane oxygen electrode Pt(O₂)⁄YSZ ...
  • Cherginets, V.L.; Rebrova, T.P.; Ponomarenko, T.V.; Tarasenko, O.A.; Kosinov, N.N.; Zelenskaya, O.V.; Dolzhenko, Yu.I. (Functional Materials, 2011)
  • Grinyov, B.V.; Cherginets, V.L.; Rebrova, T.P.; Ponomarenko, N.V.; Varich, A.G.; Rebrov, A.L. (Наука та інновації, 2020)
    Introduction. The production of CsI-based scintillation crystals results in accumulation of wastes formed during the crystal growth and as a result of the mechanical treatment. Therefore, thorough purification from heavy ...