Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system
Phase equilibria in Cd-Hg-Te system are analyzed in the framework of the polyassociative solution model. Checking the mentioned model applicability to description of phase equilibria and search of system thermodynamical functions were realized by sequential processing the data upon phase equilibria...
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| Veröffentlicht in: | Semiconductor Physics Quantum Electronics & Optoelectronics |
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| Datum: | 2003 |
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| Format: | Artikel |
| Sprache: | English |
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Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України
2003
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| Online Zugang: | https://nasplib.isofts.kiev.ua/handle/123456789/117869 |
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| Назва журналу: | Digital Library of Periodicals of National Academy of Sciences of Ukraine |
| Zitieren: | Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system / P.P. Moskvin, L.V. Rashkovets'kyi, S.V. Kavertsev, G.I. Zhovnir, A.O. Ruden'kyi // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2003. — Т. 6, № 1. — С. 23-27. — Бібліогр.: 15 назв. — англ. |
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Moskvin, P.P. Rashkovets'kyi, L.V. Kavertsev, S.V. Zhovnir, G.I. Ruden'kyi, A.O. 2017-05-27T10:05:08Z 2017-05-27T10:05:08Z 2003 Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system / P.P. Moskvin, L.V. Rashkovets'kyi, S.V. Kavertsev, G.I. Zhovnir, A.O. Ruden'kyi // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2003. — Т. 6, № 1. — С. 23-27. — Бібліогр.: 15 назв. — англ. 1560-8034 PACS: 64.90.+b https://nasplib.isofts.kiev.ua/handle/123456789/117869 Phase equilibria in Cd-Hg-Te system are analyzed in the framework of the polyassociative solution model. Checking the mentioned model applicability to description of phase equilibria and search of system thermodynamical functions were realized by sequential processing the data upon phase equilibria in initial binary system using computer software. After Hg-Te system, as the next material we chose Cd-Te system. It was shown that CdTe, Cd₂Te₃, CdTe₂ and Te₂ are predominant complexes of the liquid phase in the considered system. Determined are parameters of complex creation in a liquid phase. A satisfying accordance between estimation and experimental data on P-T-X equilibria in the initial binary system Cd-Te was attained using this approach. en Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України Semiconductor Physics Quantum Electronics & Optoelectronics Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system Article published earlier |
| institution |
Digital Library of Periodicals of National Academy of Sciences of Ukraine |
| collection |
DSpace DC |
| title |
Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system |
| spellingShingle |
Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system Moskvin, P.P. Rashkovets'kyi, L.V. Kavertsev, S.V. Zhovnir, G.I. Ruden'kyi, A.O. |
| title_short |
Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system |
| title_full |
Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system |
| title_fullStr |
Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system |
| title_full_unstemmed |
Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system |
| title_sort |
polyassociative thermodynamical model of a²b⁶ semiconductor melt and p-t-x equilibria in cd-hg-te system: 2. phase equilibria in initial two-component systems. cd-te system |
| author |
Moskvin, P.P. Rashkovets'kyi, L.V. Kavertsev, S.V. Zhovnir, G.I. Ruden'kyi, A.O. |
| author_facet |
Moskvin, P.P. Rashkovets'kyi, L.V. Kavertsev, S.V. Zhovnir, G.I. Ruden'kyi, A.O. |
| publishDate |
2003 |
| language |
English |
| container_title |
Semiconductor Physics Quantum Electronics & Optoelectronics |
| publisher |
Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України |
| format |
Article |
| description |
Phase equilibria in Cd-Hg-Te system are analyzed in the framework of the polyassociative solution model. Checking the mentioned model applicability to description of phase equilibria and search of system thermodynamical functions were realized by sequential processing the data upon phase equilibria in initial binary system using computer software. After Hg-Te system, as the next material we chose Cd-Te system. It was shown that CdTe, Cd₂Te₃, CdTe₂ and Te₂ are predominant complexes of the liquid phase in the considered system. Determined are parameters of complex creation in a liquid phase. A satisfying accordance between estimation and experimental data on P-T-X equilibria in the initial binary system Cd-Te was attained using this approach.
|
| issn |
1560-8034 |
| url |
https://nasplib.isofts.kiev.ua/handle/123456789/117869 |
| citation_txt |
Polyassociative thermodynamical model of A²B⁶ semiconductor melt and P-T-X equilibria in Cd-Hg-Te system: 2. Phase equilibria in initial two-component systems. Cd-Te system / P.P. Moskvin, L.V. Rashkovets'kyi, S.V. Kavertsev, G.I. Zhovnir, A.O. Ruden'kyi // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2003. — Т. 6, № 1. — С. 23-27. — Бібліогр.: 15 назв. — англ. |
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2025-11-29T10:35:40Z |
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