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The effect of non-equimolar doping on the preparation and electrical conductivity of Sr(Ti,Zr,Zn,Sn,Hf)O3- high entropy perovskite oxide

CERAMICS INTERNATIONAL(2023)

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Abstract
A series of high entropy oxides (HEOSs) with non-isomolar ratios of perovskite structures were prepared by ball milling a mixture of SrO, TiO2, ZrO2, ZnO, SnO2 and HfO2 followed by sintering using a high-temperature solidphase method. Both XRD and TG-DSC results indicate that single-phase Sr(Ti0.2Zr0.2Zn0.2Sn0.2Hf0.2)O3-sigma is formed at 1500 degrees C. According to the SEM-EDS pictures, the elements in the oxide are uniformly distributed with no significant segregation or accumulation. The TEM results show that the polycrystalline ceramic powders can be classified as orthogonal Pbnm perovskite structure. The electrical conductivity (sigma) was measured by the EIS technique and the activation energy (Ea) of HEOSs is calculated. In the temperature range of 300-750 degrees C, Sr (Ti0.28Zr0.18Zn0.18 Sn0.18 Hf0.18)O3-sigma exhibits the highest conductivity (2.41 x 10-3 S/cm) and the lowest activation energy (Ea = 0.57 eV) due to lattice distortion and oxygen vacancy concentration.
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Key words
High entropy oxide,Non-isomolar ratio,Perovskite structure,Electrical conductivity
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