Publication | Closed Access
Enhancement of thermoelectric power factor of Sr2CoMoO6 double perovskite by annealing in reducing atmosphere
15
Citations
38
References
2017
Year
EngineeringThermoelectricsHalide PerovskitesPerovskite ModuleThermal ConductivityN-type Thermoelectric MaterialSemiconductorsThermoelectric Power FactorSuperconductivitySr2comoo6 Double PerovskiteMaterials ScienceElectrical EngineeringN-type Thermoelectric MaterialsOxide ElectronicsAs-sintered Scmo SampleLead-free PerovskitesHigh Temperature MaterialsPerovskite Solar CellEnergy CeramicApplied PhysicsThermoelectric MaterialFunctional MaterialsThermal Properties
In general, n-type thermoelectric materials are rather difficult to design. This study particularly pivoted on designing potential environmentally benign oxides based n-type thermoelectric material. We synthesized Sr2CoMoO6 (SCMO) polycrystalline ceramics via the solid-state synthesis route. XRD, SEM, and thermoelectric measurements were carried out for phase constitution, microstructure analysis, and to determine its potential for thermoelectric applications. As-sintered SCMO sample showed an insulator like behavior till 640 °C after which it exhibited an n-type non-degenerate semiconductor behavior followed by a p-n type conduction switching. To stabilize a high temperature n-type behavior, annealing of SCMO in reducing atmosphere (H2) at 1000 °C was carried out. After annealing, the SCMO demonstrated an n-type semiconductor behavior throughout the temperature range of measurement. The electrical conductivity (σ) and the power factor (S2σ) were found to be increased manifold in the annealed SCMO double perovskite.
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