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Reevaluation of PbTe1−xIx as high performance n-type thermoelectric material
399
Citations
33
References
2011
Year
Materials EngineeringMaterials ScienceElectronic DevicesHigh Temperature MaterialsEngineeringTransport PropertiesApplied PhysicsCondensed Matter PhysicsThermal TransportThermoelectricsIodine DopingThermoelectric MaterialSemiconductor MaterialThermodynamicsThermal ConductionN-type Pbte1−xixThermal ConductivityN-type Pbte
Thermoelectric transport properties of n-type PbTe1−xIx with carrier concentrations ranging from 5.8 × 1018–1.4 × 1020 cm−3 are reinvestigated from room temperature to 800 K. The electronic transport properties, resistivity and Seebeck coefficient in this study are effectively consistent with prior reports, however the thermal conductivity has been found to be historically overestimated. The reassessment of the thermal transport properties, in combination with careful control of the carrier density by iodine doping, reveals a significantly larger figure of merit, zT ∼ 1.4, than often previously reported for n-type PbTe. The results and analysis of the data from this study lead to a redetermination of zT for this historical thermoelectric material and provide a renewed interest in n-type PbTe based materials.
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