Synthesis and Research of Alumina Ceramics Properties

The article describes in detail alumina powder synthesis by different methods at varying parameters. The technique of obtaining ceramics and the research of the optical properties for determining the materials with the maximum luminescence efficiency is presented. The concentration of the luminescen...

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Autores principales: Evgeniy I. Frolov, Polina V. Notina, Sergey V. Zvonarev, Evgeniya A. Il'ina, Vyacheslav Yu. Churkin
Formato: article
Lenguaje:EN
RU
Publicado: Uralʹskij federalʹnyj universitet imeni pervogo Prezidenta Rossii B.N. Elʹcina 2020
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Acceso en línea:https://doaj.org/article/4fd1f277bc444d97b298a246b83c832d
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spelling oai:doaj.org-article:4fd1f277bc444d97b298a246b83c832d2021-12-01T05:53:11ZSynthesis and Research of Alumina Ceramics Properties2411-141410.15826/chimtech.2021.8.1.02https://doaj.org/article/4fd1f277bc444d97b298a246b83c832d2020-12-01T00:00:00Zhttps://journals.urfu.ru/index.php/chimtech/article/view/4715https://doaj.org/toc/2411-1414The article describes in detail alumina powder synthesis by different methods at varying parameters. The technique of obtaining ceramics and the research of the optical properties for determining the materials with the maximum luminescence efficiency is presented. The concentration of the luminescence intrinsic centers and various defects differ for ceramics synthesized by different methods. It is determined that ceramics based on the powder synthesized by a sol-gel method has the maximum thermoluminescence intensity in the F-center peak, whereas for the peak of 360 °C it is obtained with the powder prepared by precipitation of aluminum nitrate with a PEG‑20000 stabilizer.Evgeniy I. FrolovPolina V. NotinaSergey V. ZvonarevEvgeniya A. Il'inaVyacheslav Yu. ChurkinUralʹskij federalʹnyj universitet imeni pervogo Prezidenta Rossii B.N. Elʹcina articlealuminum oxide synthesisthermal decompositionchemical precipitationsol-gel methodthermoluminescenceChemistryQD1-999ENRUChimica Techno Acta, Vol 8, Iss 1 (2020)
institution DOAJ
collection DOAJ
language EN
RU
topic aluminum oxide synthesis
thermal decomposition
chemical precipitation
sol-gel method
thermoluminescence
Chemistry
QD1-999
spellingShingle aluminum oxide synthesis
thermal decomposition
chemical precipitation
sol-gel method
thermoluminescence
Chemistry
QD1-999
Evgeniy I. Frolov
Polina V. Notina
Sergey V. Zvonarev
Evgeniya A. Il'ina
Vyacheslav Yu. Churkin
Synthesis and Research of Alumina Ceramics Properties
description The article describes in detail alumina powder synthesis by different methods at varying parameters. The technique of obtaining ceramics and the research of the optical properties for determining the materials with the maximum luminescence efficiency is presented. The concentration of the luminescence intrinsic centers and various defects differ for ceramics synthesized by different methods. It is determined that ceramics based on the powder synthesized by a sol-gel method has the maximum thermoluminescence intensity in the F-center peak, whereas for the peak of 360 °C it is obtained with the powder prepared by precipitation of aluminum nitrate with a PEG‑20000 stabilizer.
format article
author Evgeniy I. Frolov
Polina V. Notina
Sergey V. Zvonarev
Evgeniya A. Il'ina
Vyacheslav Yu. Churkin
author_facet Evgeniy I. Frolov
Polina V. Notina
Sergey V. Zvonarev
Evgeniya A. Il'ina
Vyacheslav Yu. Churkin
author_sort Evgeniy I. Frolov
title Synthesis and Research of Alumina Ceramics Properties
title_short Synthesis and Research of Alumina Ceramics Properties
title_full Synthesis and Research of Alumina Ceramics Properties
title_fullStr Synthesis and Research of Alumina Ceramics Properties
title_full_unstemmed Synthesis and Research of Alumina Ceramics Properties
title_sort synthesis and research of alumina ceramics properties
publisher Uralʹskij federalʹnyj universitet imeni pervogo Prezidenta Rossii B.N. Elʹcina
publishDate 2020
url https://doaj.org/article/4fd1f277bc444d97b298a246b83c832d
work_keys_str_mv AT evgeniyifrolov synthesisandresearchofaluminaceramicsproperties
AT polinavnotina synthesisandresearchofaluminaceramicsproperties
AT sergeyvzvonarev synthesisandresearchofaluminaceramicsproperties
AT evgeniyaailina synthesisandresearchofaluminaceramicsproperties
AT vyacheslavyuchurkin synthesisandresearchofaluminaceramicsproperties
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