Design and Characterization of Phosphate-Containing Ceramics with Kosnarite- and Langbeinite-Type Structures for Industrial Applications
Crystal-chemical approach provided the scientific basis for the design of new compounds with desirable structure and properties. We systemized our and literature data on the synthesis, structures and physicochemical characteristics of complex anhydrous phosphates formed by cations in oxidation degre...
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AIDIC Servizi S.r.l.
2015-05-01
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Series: | Chemical Engineering Transactions |
Online Access: | https://www.cetjournal.it/index.php/cet/article/view/5072 |
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author | V. Pet Kov E. Asabina M. Sukhanov I. Schelokov A. Shipilov A. Alekseev |
author_facet | V. Pet Kov E. Asabina M. Sukhanov I. Schelokov A. Shipilov A. Alekseev |
author_sort | V. Pet Kov |
collection | DOAJ |
description | Crystal-chemical approach provided the scientific basis for the design of new compounds with desirable structure and properties. We systemized our and literature data on the synthesis, structures and physicochemical characteristics of complex anhydrous phosphates formed by cations in oxidation degrees ranging from +1 to +4 (M+ - Li, Na, K, Rb, Cs; M2+ - Mg, Ca, Sr, Ba, Mn, Co, Ni, Cu, Zn; M3+ - Fe, M4+ - Ti, Zr, Hf), including phosphates in which PO4 has been partially replaced by TO4 (T = Si, As, V, Mo, S). To study the influence of M+ and M4+, M2+ and M4+ radii on the stability regions of different structural types, we studied the phase formation in the M+1-xM’+ M4+4/3(PO4)3, M+Zr2(TO4)x(PO4)3-x, M2+0.5+xM’2+xM4+2-x(PO4)3, Ba3/2Fe2(PO4)3, M+M2+MgM4+(PO4)3, M+ 5/3MgM4+(PO4)3 and M2+0.5(1+x)FexTi2-x(PO4)3 systems with smoothly varying compositions. The key factors responsible for the formation of a particular type of structure are analyzed. The possibilities are considered for preparing structures of a desired type and for fine tuning of properties of obtained ceramics by varying the cationic and anionic components of the phosphate with retention of stable structural fragments of the crystal ensemble. |
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last_indexed | 2024-12-24T05:08:43Z |
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spelling | doaj.art-89262a75693940f0a81a5a61ed4724da2022-12-21T17:13:45ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162015-05-014310.3303/CET1543305Design and Characterization of Phosphate-Containing Ceramics with Kosnarite- and Langbeinite-Type Structures for Industrial ApplicationsV. Pet KovE. AsabinaM. SukhanovI. SchelokovA. ShipilovA. AlekseevCrystal-chemical approach provided the scientific basis for the design of new compounds with desirable structure and properties. We systemized our and literature data on the synthesis, structures and physicochemical characteristics of complex anhydrous phosphates formed by cations in oxidation degrees ranging from +1 to +4 (M+ - Li, Na, K, Rb, Cs; M2+ - Mg, Ca, Sr, Ba, Mn, Co, Ni, Cu, Zn; M3+ - Fe, M4+ - Ti, Zr, Hf), including phosphates in which PO4 has been partially replaced by TO4 (T = Si, As, V, Mo, S). To study the influence of M+ and M4+, M2+ and M4+ radii on the stability regions of different structural types, we studied the phase formation in the M+1-xM’+ M4+4/3(PO4)3, M+Zr2(TO4)x(PO4)3-x, M2+0.5+xM’2+xM4+2-x(PO4)3, Ba3/2Fe2(PO4)3, M+M2+MgM4+(PO4)3, M+ 5/3MgM4+(PO4)3 and M2+0.5(1+x)FexTi2-x(PO4)3 systems with smoothly varying compositions. The key factors responsible for the formation of a particular type of structure are analyzed. The possibilities are considered for preparing structures of a desired type and for fine tuning of properties of obtained ceramics by varying the cationic and anionic components of the phosphate with retention of stable structural fragments of the crystal ensemble.https://www.cetjournal.it/index.php/cet/article/view/5072 |
spellingShingle | V. Pet Kov E. Asabina M. Sukhanov I. Schelokov A. Shipilov A. Alekseev Design and Characterization of Phosphate-Containing Ceramics with Kosnarite- and Langbeinite-Type Structures for Industrial Applications Chemical Engineering Transactions |
title | Design and Characterization of Phosphate-Containing Ceramics with Kosnarite- and Langbeinite-Type Structures for Industrial Applications |
title_full | Design and Characterization of Phosphate-Containing Ceramics with Kosnarite- and Langbeinite-Type Structures for Industrial Applications |
title_fullStr | Design and Characterization of Phosphate-Containing Ceramics with Kosnarite- and Langbeinite-Type Structures for Industrial Applications |
title_full_unstemmed | Design and Characterization of Phosphate-Containing Ceramics with Kosnarite- and Langbeinite-Type Structures for Industrial Applications |
title_short | Design and Characterization of Phosphate-Containing Ceramics with Kosnarite- and Langbeinite-Type Structures for Industrial Applications |
title_sort | design and characterization of phosphate containing ceramics with kosnarite and langbeinite type structures for industrial applications |
url | https://www.cetjournal.it/index.php/cet/article/view/5072 |
work_keys_str_mv | AT vpetkov designandcharacterizationofphosphatecontainingceramicswithkosnariteandlangbeinitetypestructuresforindustrialapplications AT easabina designandcharacterizationofphosphatecontainingceramicswithkosnariteandlangbeinitetypestructuresforindustrialapplications AT msukhanov designandcharacterizationofphosphatecontainingceramicswithkosnariteandlangbeinitetypestructuresforindustrialapplications AT ischelokov designandcharacterizationofphosphatecontainingceramicswithkosnariteandlangbeinitetypestructuresforindustrialapplications AT ashipilov designandcharacterizationofphosphatecontainingceramicswithkosnariteandlangbeinitetypestructuresforindustrialapplications AT aalekseev designandcharacterizationofphosphatecontainingceramicswithkosnariteandlangbeinitetypestructuresforindustrialapplications |