Ultrahigh Thermoelectric Figure of Merit and Enhanced Mechanical Stability of p-type AgSb1–xZnxTe2
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- Type
- article
- Published
- 2017-01-17
- Cited by
- 87
- References
- 54
- OpenAlex
- https://openalex.org/W2578746546
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:136306404
Keywords
Figure of merit, Thermoelectric effect, Materials science, Thermal conductivity, Thermoelectric materials
References
- Relationship between thermoelectric figure of merit and energy conversion efficiency
- Tailoring of Electronic Structure and Thermoelectric Properties of a Topological Crystalline Insulator by Chemical Doping.
- Analysis of the Influence of Thermal Treatment on the Stability of Ag1−xSb1+xTe2+x and Se-Doped AgSbTe2
- Ultralow thermal conductivity and high thermoelectric figure of merit in SnSe crystals
- Strengthening Materials by Engineering Coherent Internal Boundaries at the Nanoscale
- High thermoelectric performance in tellurium free p-type AgSbSe2
- Copper ion liquid-like thermoelectrics.
- Lone pair electrons minimize lattice thermal conductivity
- Enhanced thermoelectric performance in Na-doped p-type nonstoichiometric AgSbTe2 compound
- Multiple-filled skutterudites: high thermoelectric figure of merit through separately optimizing electrical and thermal transports.
- Variable-Temperature In Situ X-ray Diffraction Study of the Thermodynamic Evolution of AgSbTe2 Thermoelectric Compound
- Cubic AgPbmSbTe2+m: Bulk Thermoelectric Materials with High Figure of Merit
- Intrinsically minimal thermal conductivity in cubic I-V-VI2 semiconductors.
- Dense dislocation arrays embedded in grain boundaries for high-performance bulk thermoelectrics
- Structure Determination of Mg5Si6 Particles in Al by Dynamic Electron Diffraction Studies
- Anisotropic Multicenter Bonding and High Thermoelectric Performance in Electron-Poor CdSb
- Strained endotaxial nanostructures with high thermoelectric figure of merit.
- Atomic ordering and gap formation in Ag-Sb-based ternary chalcogenides.
- Crystal structure, electronic and transport properties of AgSbSe2 and AgSbTe2
- Measurements of the energy band gap and valence band structure of AgSbTe 2
Cited by
- Enhancing thermoelectric performance of n-type PbSe via additional meso-scale phonon scattering
- Ultrahigh Thermoelectric Performance in SrNb0.2Ti0.8O3 Oxide Films at a Submicrometer-Scale Thickness
- Remarkable Roles of Cu To Synergistically Optimize Phonon and Carrier Transport in n-Type PbTe-Cu2Te.
- First-Principles Study of Electronic Structure, Mechanical, and Thermoelectric Properties of Ternary Palladates CdPd3O4 and TlPd3O4
- Thermal Stability and Tuning of Thermoelectric Properties of Ag1−xSb1+xTe2+x (0 ≤ x ≤ 0.4) Alloys
- Studies on n- and p-type metal oxide compounds for thermoelectric device fabrication
- Low-Symmetry Rhombohedral GeTe Thermoelectrics
- Soft Phonon Modes Leading to Ultralow Thermal Conductivity and High Thermoelectric Performance in AgCuTe.
- Engineering electrical transport in α-MgAgSb to realize high performances near room temperature.
- Recent advances in inorganic material thermoelectrics
- Dual Alloying Strategy to Achieve a High Thermoelectric Figure of Merit and Lattice Hardening in p-Type Nanostructured PbTe
- High-Performance GeTe Thermoelectrics in Both Rhombohedral and Cubic Phases.
- Enhanced thermoelectric performance in topological crystalline insulator n-type Pb0.6Sn0.4Te by simultaneous tuning of the band gap and chemical potential
- Thermoelectric Transport Properties of Cd xBi yGe1- x- yTe Alloys.
- Enhanced thermoelectric properties of InSb: Studies on In/Ga doped GaSb/InSb crystals
- Enhancement of thermoelectric properties by lattice softening and energy band gap control in Te-deficient InTe1−δ
- State-of-the-Art Reviews and Analyses of Emerging Research Findings and Achievements of Thermoelectric Materials over the Past Years
- High thermoelectric performance in Cu2Se superionic conductor with enhanced liquid-like behaviour by dispersing SiC
- Sodium bismuth dichalcogenides: candidates for ferroelectric high-mobility semiconductors for multifunctional applications.
- Phonon Localization and Entropy-Driven Point Defects Lead to Ultralow Thermal Conductivity and Enhanced Thermoelectric Performance in (SnTe)1–2x(SnSe)x(SnS)x
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