Journal of Physics D Applied Physics · 2008 · 90 citations · 15 references
EngineeringThermoelectric DevicesThermoelectricsP-type Tags-85Thermal ConductivityElectronic DevicesThermodynamicsThermal ConductionMaterials ScienceElectrical EngineeringDeveloped TedsThermal TransportHeat TransferMicroelectronicsElectrical PropertyPyroelectricityN-type PbteHigh Temperature MaterialsApplied PhysicsOutput PowerThermoelectric MaterialThermal Engineering
Diffusion bonded very low resistance electrical contacts (specific contact resistance <10 µΩ cm2) have been developed on n-type PbTe and p-type TAGS-85 ((AgSbTe2)0.15(GeTe)0.85) thermoelements. Thermoelectric devices (TEDs) having two p–n couples in series (each of four elements having 7.5 mm diameter) generated an output power of 1.2 W (at an operating current of ~17 A) at hot side temperature Th = 500 °C and a temperature difference ΔT = 410 °C. Internal resistance of the devices was found to increase linearly with an increase in the number of thermoelements. The efficiency of developed TEDs was found to be 6%. The devices have been operated continuously for more than 8 months in air without any degradation of the output power.
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G.A. Moore · Electronics and Power · 1984 · 315 citations
Thermal Conductivity of Ge-Si Alloys at High Temperatures
B. Abeles, D. S. Beers, George D. Cody et al. · Physical Review · 1962 · 202 citations
Materials Science, Materials Engineering, Energy Conversion Efficiency +13