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Перегляд Відділення фізико-технічних проблем матеріалознавства за автором "Valakh, M.Ya."

Репозиторій DSpace/Manakin

Перегляд Відділення фізико-технічних проблем матеріалознавства за автором "Valakh, M.Ya."

Сортувати за: Порядок: Результатів:

  • Kapush, O.; Budzulyak, S.I.; Korbutyak, D.V.; Vakhnyak, N.D.; Boruk, S.D.; Dzhagan, V.M.; Yemets, A.I.; Valakh, M.Ya. (Functional Materials, 2019)
    Surface and optical properties of CdTe nanoparticles obtained by grinding (40-150 nm, microcrystals) and colloidal synthesis (1-4 nm, nanocrystals) methods are investigated. It is shown that the most intensive adsorption ...
  • Dzhagan, V.M.; Valakh, M.Ya.; Konchits, A.A.; Vorona, I.P.; Yefanov, V.S.; Klyui, M.I.; Temchenko, V.P.; Dubok, V.A. (Functional Materials, 2009)
    Structural modification of hydroxyapatite (HAP) formed by gas detonation HAP deposition on metal substrates has been studied using Raman spectroscopy and electron spin resonance (ESR) techniques. It was revealed, that the ...
  • Konchits, A.A.; Shanina, B.D.; Valakh, M.Ya.; Yanchuk, I.B.; Yukhymchuk, V.O.; Yefanov, A.V.; Krasnovyd, S.V.; Skoryk, M.A. (Functional Materials, 2014)
    The correlation between morphology, local structure and magnetic properties of the different origin shungite material with nanocarbon content 25-40 wt. % was studied by SEM, EPR, and Raman scattering methods. It was ...
  • Valakh, M.Ya.; Gamov, D.V.; Dzhagan, V.M.; Lytvyn, O.S.; Melnik, V.P.; Romanjuk, B.M.; Popov, V.G.; Yukhymchuk, V.O. (Functional Materials, 2006)
    The possibility to obtain a heterosystem consisting of the upper partially strained and lower relaxed layers by gradient in situ doping of SiGe layers with carbon is considered. The properties of the as-grown and annealed ...
  • Yukhymchuk, V.O.; Kiselev, V.S.; Belyaev, A.E.; Chursanova, M.V.; Danailov, M.; Valakh, M.Ya. (Functional Materials, 2010)
  • Babichuk, I.S.; Yukhymchuk, V.O.; Dzhagan, V.M.; Valakh, M.Ya.; Leon, M.; Yanchuk, I.B.; Gule, E.G.; Greshchuk, O.M. (Functional Materials, 2013)
    The structure of Cu₂ZnSnS₄ films was investigated by Raman spectroscopy, scanning electron microscopy, energy dispersive X-ray spectrometry, optical reflectance and photoluminescence. The films were formed by thermal ...

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