Nanomaterials
(Feb 2020)
High Entropy Oxide Phases with Perovskite Structure
Denis A. Vinnik,
Evgeny A. Trofimov,
Vladimir E. Zhivulin,
Svetlana A. Gudkova,
Olga V. Zaitseva,
Dmitry A. Zherebtsov,
Andrey Yu. Starikov,
Darya P. Sherstyuk,
Abdulkarim A. Amirov,
Alexandr V. Kalgin,
Sergey V. Trukhanov,
Fedor V. Podgornov
Affiliations
Denis A. Vinnik
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
Evgeny A. Trofimov
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
Vladimir E. Zhivulin
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
Svetlana A. Gudkova
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
Olga V. Zaitseva
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
Dmitry A. Zherebtsov
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
Andrey Yu. Starikov
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
Darya P. Sherstyuk
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
Abdulkarim A. Amirov
Immanuel Kant Baltic Federal University, 236041 Kaliningrad, Russia
Alexandr V. Kalgin
Voronezh State Technical University, 394000 Voronezh, Russia
Sergey V. Trukhanov
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
Fedor V. Podgornov
Material science and physics&chemistry of materials, South Ural State University (National Research University), 454080 Chelyabinsk, Russia
DOI
https://doi.org/10.3390/nano10020268
Journal volume & issue
Vol. 10,
no. 2
p.
268
Abstract
Read online
The possibility of the formation of high entropy single-phase perovskites using solid-state sintering was investigated. The BaO−SrO−CaO−MgO−PbO−TiO2, BaO−SrO−CaO−MgO−PbO−Fe2O3 and Na2O−K2O−CaO−La2O3−Ce2O3−TiO2 oxide systems were investigated. The optimal synthesis temperature is found between 1150 and 1400 °C, at which the microcrystalline single phase with perovskite structure was produced. The morphology, chemical composition, crystal parameters and dielectric properties were studied and compared with that of pure BaTiO3. According to the EDX data, the single-phase product has a formula of Na0.30K0.07Ca0.24La0.18Ce0.21TiO3 and a cubic structure.
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