Enhanced thermoelectric performance in Na-doped p-type nonstoichiometric AgSbTe2 compound
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- Type
- article
- Published
- 2011-02-03
- Cited by
- 43
- References
- 27
- OpenAlex
- https://openalex.org/W1985737404
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93832501
Keywords
Spark plasma sintering, Seebeck coefficient, Thermoelectric effect, Materials science, Doping
References
- Thermoelectrics: Basic Principles and New Materials Developments
- Anomalous temperature-dependent Young’s modulus of a cast LAST (Pb–Sb–Ag–Te) thermoelectric material
- Improved thermoelectric properties of AgSbTe2 based compounds with nanoscale Ag2Te in situ precipitates
- Nanostructures in high-performance (GeTe)x(AgSbTe2)100−x thermoelectric materials
- Interfacial defect structure at Sb2Te3 precipitates in the thermoelectric compound AgSbTe2
- The thermal conductivity of silver antimony telluride
- Microstructures and liquidus projection of the ternary Ag–Sb–Te system
- Transport properties of Ag0.8Pb18SbTe20 prepared by high pressure and high temperature
- Cubic AgPbmSbTe2+m: Bulk Thermoelectric Materials with High Figure of Merit
- Intrinsically minimal thermal conductivity in cubic I-V-VI2 semiconductors.
- First-principles study of the electronic, optical, and lattice vibrational properties of AgSbTe 2
- Atomic ordering and gap formation in Ag-Sb-based ternary chalcogenides.
- Measurements of the energy band gap and valence band structure of AgSbTe 2
- A Structural Study of the Compound AgSbTe2
- Thermoelectric properties and nanostructuring in the p-type materials NaPb 18-xSn xMTe 20 (M = Sb, Bi)
- High thermoelectric figure of merit and nanostructuring in bulk AgSbTe2
- Lower limit to the thermal conductivity of disordered crystals.
- Phase compositions, nanoscale microstructures and thermoelectric properties in Ag2−ySbyTe1+y alloys with precipitated Sb2Te3 plates
- Precipitation of Ag2Te in the thermoelectric material AgSbTe2
- Doping Effects on the Thermoelectric Properties of AgSbTe2
Cited by
- Enhanced thermoelectric properties of AgSbTe2 obtained by controlling heterophases with Ce doping
- Tailoring Cu2−xTe quantum-dot-decorated ZnO nanoparticles for potential solar cell applications
- Microstructure and thermoelectric properties of Bi0.5Na0.02Sb1.48−xInxTe3 alloys fabricated by vacuum melting and hot pressing
- Variable-Temperature In Situ X-ray Diffraction Study of the Thermodynamic Evolution of AgSbTe2 Thermoelectric Compound
- Influence of nanoscale Ag2Te precipitates on the thermoelectric properties of the Sn doped P-type AgSbTe2 compound
- Construction of strong alkaline hydrothermal environment for synthesis of copper telluride nanowires
- Effects of nano-domains on thermoelectric properties in telluride system
- Crystallization process of in situ annealed Ge2Sb2Te5 films
- New promising bulk thermoelectrics: intermetallics, pnictides and chalcogenides
- Effect of Ce Substitution for Sb on the Thermoelectric Properties of AgSbTe2 Compound
- Influence of In doping on the thermoelectric properties of an AgSbTe2 compound with enhanced figure of merit
- Optimization of Thermoelectric Properties of p-type AgSbTe2 Thin Films via Electrochemical Synthesis
- Colloidal AgSbSe2 nanocrystals: surface analysis, electronic doping and processing into thermoelectric nanomaterials
- Effect of La-doping on AgSbTe2 thermoelectric compounds
- Ultrahigh Thermoelectric Figure of Merit and Enhanced Mechanical Stability of p-type AgSb1–xZnxTe2
- Effect of annealing process on the properties of undoped and manganese 2+ -doped co-binary copper telluride and tin telluride thin films
- Thermoelectric properties of Bi0.5Sb1.4−xNaxIn0.1Te3 alloys
- Near-room-temperature thermoelectric materials and their application prospects in geothermal power generation
- Effect of substrates on thermoelectric properties of Ag–Sb–Te thin films within the temperature annealing
- Synthesis dependent phase segregation in thermoelectric material AgSbTe2
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