Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure
Using the X-ray phase analysis and IR spectrocopy, the isomorphic substitution of samarium for strontium according to the Sr²⁺+OH⁻->Sm³⁺+O²⁻ has been studied in a synthetic hydroxyapatite corresponding to the system composition Sr₅₋ₓSmₓ(VO₄)₃(OH)₁₋ₓOₓ (O≤x≤0.40). The solid solutions on the basis...
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| Date: | 2007 |
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| Language: | English |
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НТК «Інститут монокристалів» НАН України
2007
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| Online Access: | https://nasplib.isofts.kiev.ua/handle/123456789/136537 |
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| Cite this: | Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure / E.I. Get`man, V.I. Marchenko, S.N. Loboda, N.V. Yablochkova, A.L. Plehov // Functional Materials. — 2007. — Т. 14, № 3. — С. 317-320. — Бібліогр.: 11 назв. — англ. |
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Get`man, E.I. Marchenko, V.I. Loboda, S.N. Yablochkova, N.V. Plehov, A.L. 2018-06-16T13:22:49Z 2018-06-16T13:22:49Z 2007 Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure / E.I. Get`man, V.I. Marchenko, S.N. Loboda, N.V. Yablochkova, A.L. Plehov // Functional Materials. — 2007. — Т. 14, № 3. — С. 317-320. — Бібліогр.: 11 назв. — англ. 1027-5495 https://nasplib.isofts.kiev.ua/handle/123456789/136537 Using the X-ray phase analysis and IR spectrocopy, the isomorphic substitution of samarium for strontium according to the Sr²⁺+OH⁻->Sm³⁺+O²⁻ has been studied in a synthetic hydroxyapatite corresponding to the system composition Sr₅₋ₓSmₓ(VO₄)₃(OH)₁₋ₓOₓ (O≤x≤0.40). The solid solutions on the basis of strontium hydroxyapatites (synthesized at 800°C from solutions) have been established to be formed within limits 0<x<0.12. The crystals structure of the solid solutions obtained has been refined by the Rietveld method. en НТК «Інститут монокристалів» НАН України Functional Materials Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure Ізоморфне заміщення стронцію на самарій у структурі Sr₅(VO₄)₃OH Article published earlier |
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Digital Library of Periodicals of National Academy of Sciences of Ukraine |
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DSpace DC |
| title |
Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure |
| spellingShingle |
Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure Get`man, E.I. Marchenko, V.I. Loboda, S.N. Yablochkova, N.V. Plehov, A.L. |
| title_short |
Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure |
| title_full |
Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure |
| title_fullStr |
Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure |
| title_full_unstemmed |
Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure |
| title_sort |
isomorphic substitution of samarium for strontium in the sr₅(vo₄)₃oh structure |
| author |
Get`man, E.I. Marchenko, V.I. Loboda, S.N. Yablochkova, N.V. Plehov, A.L. |
| author_facet |
Get`man, E.I. Marchenko, V.I. Loboda, S.N. Yablochkova, N.V. Plehov, A.L. |
| publishDate |
2007 |
| language |
English |
| container_title |
Functional Materials |
| publisher |
НТК «Інститут монокристалів» НАН України |
| format |
Article |
| title_alt |
Ізоморфне заміщення стронцію на самарій у структурі Sr₅(VO₄)₃OH |
| description |
Using the X-ray phase analysis and IR spectrocopy, the isomorphic substitution of samarium for strontium according to the Sr²⁺+OH⁻->Sm³⁺+O²⁻ has been studied in a synthetic hydroxyapatite corresponding to the system composition Sr₅₋ₓSmₓ(VO₄)₃(OH)₁₋ₓOₓ (O≤x≤0.40). The solid solutions on the basis of strontium hydroxyapatites (synthesized at 800°C from solutions) have been established to be formed within limits 0<x<0.12. The crystals structure of the solid solutions obtained has been refined by the Rietveld method.
|
| issn |
1027-5495 |
| url |
https://nasplib.isofts.kiev.ua/handle/123456789/136537 |
| citation_txt |
Isomorphic substitution of samarium for strontium in the Sr₅(VO₄)₃OH structure / E.I. Get`man, V.I. Marchenko, S.N. Loboda, N.V. Yablochkova, A.L. Plehov // Functional Materials. — 2007. — Т. 14, № 3. — С. 317-320. — Бібліогр.: 11 назв. — англ. |
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2025-12-07T16:48:21Z |
| last_indexed |
2025-12-07T16:48:21Z |
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