Role of Mg–O on phase stabilization in solution combustion processed rocksalt structured high entropy oxide (CoCuMgZnNi)O with high dielectric performance
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Date
2023
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Publisher
Elsevier Ltd
Abstract
High entropy oxide (CoCuMgZnNi)O with a phase pure rocksalt was synthesized using low-temperature solution combustion. The precursors were found to combust at 270 °C and 400 °C was considered to be the formation temperature. The high entropy rocksalt oxide (HERO) fully stabilized at 1000 °C shows a single-phase, fcc rocksalt structure with an Fm-3m space group. HERO displays one of its parent oxide Mg–O structural properties as both belong to the cubic family and had lattice parameters very close to each other. The lower cation systems exhibited a transition from spinel to rocksalt structure with the addition of Mg–O. Raman of HERO affirmed a completely disordered occupancy of various metal cations, the formation of HERO at 400 °C, and phase stabilization at 1000 °C. Dielectric measurements at room temperature showed high permittivity (κ) with magnitudes ∼1.9 × 103, 4.7× 101, and 0.9 × 101 at 100, 1k, and 100k Hz. © 2023 Elsevier Ltd and Techna Group S.r.l.
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Keywords
Cobalt compounds, Combustion, Magnesium compounds, Nickel compounds, Permittivity, Positive ions, Stabilization, Temperature, Zinc compounds, Dielectric performance, Dielectrics property, High dielectrics, High entropy, Phase pure, Phase stabilization, Rock salt, Rock-salt structure, Solution combustion, Synthesised, Entropy
Citation
Ceramics International, 2023, 49, 19, pp. 31131-31143
