Rationally Designing High-Performance Bulk Thermoelectric Materials.
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Summary
This review describes the recent advances in designing high-performance bulk thermoelectric materials and highlights the decoupling of the electron and phonon transport through coherent interface, matrix/precipitate electronic bands alignment, and compositionally alloyed nanostructures.
- Type
- review
- Published
- 2016-08-31
- Cited by
- 2,019
- References
- 250
- OpenAlex
- https://openalex.org/W2511197735
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24277778
Keywords
Thermoelectric effect, Thermoelectric materials, Figure of merit, Effective mass (spring–mass system), Condensed matter physics
References
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- CRC Handbook of Thermoelectrics
- Transport Properties of Polycrystalline p-type SnSe
- Lattice vibration modes of the layered material BiCuSeO and first principles study of its thermoelectric properties
- Role of K/Bi disorder in the electronic structure of β -K2 Bi8 Se13
- Ag9TlTe5: A high-performance thermoelectric bulk material with extremely low thermal conductivity
- Direct Electrodeposition of Highly Dense 50 nm Bi2Te3-ySey Nanowire Arrays
- Thermoelectric Properties of Mineral Tetrahedrites Cu10Tr2Sb4S13 with Low Thermal Conductivity
- Bi1−xSrxCuSeO oxyselenides as promising thermoelectric materials
- From Bonding Asymmetry to Anharmonic Rattling in Cu12Sb4S13 Tetrahedrites: When Lone‐Pair Electrons Are Not So Lonely
- High performance InxCeyCo4Sb12 thermoelectric materials with in situ forming nanostructured InSb phase
- Electronic structure of CoSb 3 : A narrow-band-gap semiconductor
- Vacancy phonon scattering in thermoelectric In2Te3-InSb solid solutions
- Synergistically optimized electrical and thermal transport properties of SnTe via alloying high-solubility MnTe
- Thermal conductivity of SnO2 single crystals
- Superior thermoelectric performance in PbTe-PbS pseudo-binary. Extremely low thermal conductivity and modulated carrier concentration
- Valence band engineering and thermoelectric performance optimization in SnTe by Mn-alloying via a zone-melting method
- A Thermoelectric Zintl Phase Na2+xGa2+xSn4–x with Disordered Na Atoms in Helical Tunnels
- Toward high thermoelectric performance p-type FeSb2.2Te0.8via in situ formation of InSb nanoinclusions
- Tuning Multiscale Microstructures to Enhance Thermoelectric Performance of n‐Type Bismuth‐Telluride‐Based Solid Solutions
Cited by
- Enhanced Thermoelectric Performance of Quaternary Cu2-2 xAg2 xSe1- xS x Liquid-like Chalcogenides.
- Thermoelectric Transport in Nanocomposites
- SnSe: a remarkable new thermoelectric material
- Lead-free tin chalcogenide thermoelectric materials
- Raising thermoelectric performance of n-type SnSe via Br doping and Pb alloying
- Integrating Band Structure Engineering with All‐Scale Hierarchical Structuring for High Thermoelectric Performance in PbTe System
- Ultrathin few layer oxychalcogenide BiCuSeO nanosheets
- The influence of doping sites on achieving higher thermoelectric performance for nanostructured α-MgAgSb
- Mechanochemical synthesis of high thermoelectric performance bulk Cu2X (X = S, Se) materials
- Multiple Converged Conduction Bands in K2Bi8Se13: A Promising Thermoelectric Material with Extremely Low Thermal Conductivity.
- ZnTe Alloying Effect on Enhanced Thermoelectric Properties of p-Type PbTe.
- Ultrahigh Thermoelectric Figure of Merit and Enhanced Mechanical Stability of p-type AgSb1–xZnxTe2
- Thermoelectric enhancement in sliver tantalate via strain-induced band modification and chemical bond softening
- Investigation on the microstructure and thermoelectric performance of magnetic ions doped Bi0.5Sb1.5Te3 solidified under a magnetostatic field
- Thermoelectric transport properties of polycrystalline SnSe alloyed with PbSe
- An enhanced Seebeck coefficient and high thermoelectric performance in p-type In and Mg co-doped Sn1−xPbxTe via the co-adjuvant effect of the resonance level and heavy hole valence band
- Enhancing thermoelectric performance of n-type PbSe via additional meso-scale phonon scattering
- Thermoelectric Performance of Tetrahedrite Synthesized by a Modified Polyol Process
- New tricks for optimizing thermoelectric materials
- A TiAlCu Metallization for ‘n’ Type CoSb_xCoSbx Skutterudites with Improved Performance for High-Temperature Energy Harvesting Applications
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