New MoCd2 phase in film coatings of molybdenum-cadmium system
Ion-plasma sputtering and code position of Mo and Cd ultrafine particles have been used for the first time to prepare solid solutions that are alloys with a concentration up to 57.3 at. % Cd in the film; this confirms the thermal-fluctuation and coalescence of small particles. When coatings are form...
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L.N. Gumilyov Eurasian National University
2018-12-01
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doaj-fbc78b3e766e4f1a9426d659446a66632020-11-24T23:52:09ZengL.N. Gumilyov Eurasian National UniversityEurasian Journal of Physics and Functional Materials2522-98692616-85372018-12-012434135210.29317/ejpfm.2018020406New MoCd2 phase in film coatings of molybdenum-cadmium systemYu.Zh. Tuleushev0V.N. Volodin1Y.A. Zhakanbaev2Institute of Nuclear Physics, RK Ministry of Energy, Almaty, Kazakhstan, JSC "National Center of Space Research and Technology", Almaty, KazakhstanInstitute of Nuclear Physics, RK Ministry of Energy, Almaty, KazakhstanInstitute of Nuclear Physics, RK Ministry of Energy, Almaty, KazakhstanIon-plasma sputtering and code position of Mo and Cd ultrafine particles have been used for the first time to prepare solid solutions that are alloys with a concentration up to 57.3 at. % Cd in the film; this confirms the thermal-fluctuation and coalescence of small particles. When coatings are formed by molyb-denum and cadmium nanolayers less than 2 nm in the concentrations range of 60-66 at. % Cd, a new phase was found that was prepared directly in the course of film coating formation; it was identified as the MoCd 2 compound with a tetragonal face-centered lattice, with the parameters a = 0.78231 nm and c = 0.77039 nm. X-ray diffraction data for the identification of the intermetallic compound were determined. The unit cell of MoCd 2 has been constructed. Upon accumulation in the lattice, cadmium first replaces the molybdenum atom in the center of the unit cell, then another cadmium atom is embedded in the molybdenum lattice, replacing the atom at one of the cube corners and accompanied by a cubicto-tetragonal cell transformation where the cadmium atoms are embedded in pairs on the side faces of the cell in the MoCd 2 compound. Thermal stability of the intermetallic compound is limited by 200 ◦ C. Synthesized phase of MoCd 2 has a metallic type of conductivity.http://ephys.kz/files/2018-12-24_0_Vol2_no4%20(6).pdfion-plasma sputteringalloyscoatingsnanolayers |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yu.Zh. Tuleushev V.N. Volodin Y.A. Zhakanbaev |
spellingShingle |
Yu.Zh. Tuleushev V.N. Volodin Y.A. Zhakanbaev New MoCd2 phase in film coatings of molybdenum-cadmium system Eurasian Journal of Physics and Functional Materials ion-plasma sputtering alloys coatings nanolayers |
author_facet |
Yu.Zh. Tuleushev V.N. Volodin Y.A. Zhakanbaev |
author_sort |
Yu.Zh. Tuleushev |
title |
New MoCd2 phase in film coatings of molybdenum-cadmium system |
title_short |
New MoCd2 phase in film coatings of molybdenum-cadmium system |
title_full |
New MoCd2 phase in film coatings of molybdenum-cadmium system |
title_fullStr |
New MoCd2 phase in film coatings of molybdenum-cadmium system |
title_full_unstemmed |
New MoCd2 phase in film coatings of molybdenum-cadmium system |
title_sort |
new mocd2 phase in film coatings of molybdenum-cadmium system |
publisher |
L.N. Gumilyov Eurasian National University |
series |
Eurasian Journal of Physics and Functional Materials |
issn |
2522-9869 2616-8537 |
publishDate |
2018-12-01 |
description |
Ion-plasma sputtering and code position of Mo and Cd ultrafine particles have been used for the first time to prepare solid solutions that are alloys with a concentration up to 57.3 at. % Cd in the film; this confirms the thermal-fluctuation and coalescence of small particles. When coatings are formed by molyb-denum and cadmium nanolayers less than 2 nm in the concentrations range of 60-66 at. % Cd, a new phase was found that was prepared directly in the course of film coating formation; it was identified as the MoCd 2 compound with a tetragonal face-centered lattice, with the parameters a = 0.78231 nm and c = 0.77039 nm. X-ray diffraction data for the identification of the intermetallic compound were
determined. The unit cell of MoCd 2 has been constructed. Upon accumulation in the lattice, cadmium first replaces the molybdenum atom in the center of the unit cell, then another cadmium atom is embedded in the molybdenum lattice, replacing the atom at one of the cube corners and accompanied by a cubicto-tetragonal cell transformation where the cadmium atoms are embedded in pairs on the side faces of the cell in the MoCd 2 compound. Thermal stability of the intermetallic compound is limited by 200 ◦ C. Synthesized phase of MoCd 2 has a metallic type of conductivity. |
topic |
ion-plasma sputtering alloys coatings nanolayers |
url |
http://ephys.kz/files/2018-12-24_0_Vol2_no4%20(6).pdf |
work_keys_str_mv |
AT yuzhtuleushev newmocd2phaseinfilmcoatingsofmolybdenumcadmiumsystem AT vnvolodin newmocd2phaseinfilmcoatingsofmolybdenumcadmiumsystem AT yazhakanbaev newmocd2phaseinfilmcoatingsofmolybdenumcadmiumsystem |
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1725474568489926656 |