ZnTe Alloying Effect on Enhanced Thermoelectric Properties of p-Type PbTe.
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Summary
It is found that the solid solubility limit of ZnTe in PbTe is less than 1 mol %, and a maximum thermoelectric figure of merit (ZT) of 1.73 at 700 K is achieved for the spark plasma-sintered Pb0.985Na0.015Te.
- Type
- article
- Published
- 2017-01-18
- Cited by
- 32
- References
- 48
- OpenAlex
- https://openalex.org/W2571515778
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206439222
Keywords
Materials science, Thermoelectric effect, Thermoelectric materials, Optoelectronics, Engineering physics
References
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- PbTe-PbSnS 2 thermoelectric composites: Low lattice thermal conductivity from large microstructures
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- Exploration of Zn resonance levels and thermoelectric properties in I-doped PbTe with ZnTe nanostructures.
- Strong Phonon Scattering by Layer Structured PbSnS2 in PbTe Based Thermoelectric Materials
- Cooling, Heating, Generating Power, and Recovering Waste Heat with Thermoelectric Systems
- Phonon Scattering and Thermal Conductivity in p‐Type Nanostructured PbTe‐BaTe Bulk Thermoelectric Materials
Cited by
- Enhancing p-Type Thermoelectric Performances of Polycrystalline SnSe via Tuning Phase Transition Temperature.
- Thermoelectric properties of (DyNiSn)1−x(DyNiSb)x composite
- Thermoelectric properties and thermal stability of Bi-doped PbTe single crystal
- Defect Engineering for High-Performance n-Type PbSe Thermoelectrics.
- Unusual n-type thermoelectric properties of Bi2Te3 doped with divalent alkali earth metals
- Thermoelectric properties of Mn, Bi, and Sb co-doped SnTe with a low lattice thermal conductivity
- Chemical and structural engineering of transition metal boride towards excellent and sustainable hydrogen evolution reaction
- Fabrication and thermoelectric properties of Pb (Zn0.85Al0.15) Te-Te (y = 0, 0.04, 0.06, 0.08, and 0.11) nanocomposites
- Identifying the origins of high thermoelectric performance in group IIIA elements doped PbS.
- Electrical transport properties of Indium chalcogenide thin films and their thermoelectric applications
- Nanoscale defect structures advancing high performance n-type PbSe thermoelectrics
- Origin of the Distinct Thermoelectric Transport Properties of Chalcopyrite ABTe2 (A = Cu, Ag; B = Ga, In)
- Phase transformation from PbS to PbSe:S in hot-wall deposition of nanocomposite thin film with evaporation sources of PbS and ZnSe
- Optical and thermoelectric properties of Sb2Te3/ZnTe nanostructured composites
- Electronic structure modulation of Pb0.6Sn0.4Te via zinc doping and its effect on the thermoelectric properties
- Atomic‐Ordering‐Induced Modulated Properties of Zigzag ZnTe Nanotubes
- Enhanced thermoelectric properties of bismuth and zinc co-doped SnTe by band engineering and all-scale structure defects
- Zn-Induced Defect Complexity for the High Thermoelectric Performance of n-Type PbTe Compounds.
- Record High Power Factor and Low Thermal Conductivity in Amorphous/PbTe/Amorphous Multiple Quantum Wells
- SnSe: The rise of the ultrahigh thermoelectric performance material
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