Engineering Nanostructural Routes for Enhancing Thermoelectric Performance: Bulk to Nanoscale
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Summary
This review focusses on how the nanostructure in nanostructured composites, confinement effects in one-dimensional nanowires and doping effects in conventional bulk composites plays an important role in ZT enhancement.
- Type
- review
- Published
- 2015-11-10
- Cited by
- 20
- References
- 39
- Access
- Open access
- OpenAlex
- https://openalex.org/W2118567750
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17361519
Keywords
Thermoelectric effect, Materials science, Renewable energy, Thermoelectric materials, Nanostructure
References
- Synthesis of YbyCo4Sb12∕Yb2O3 composites and their thermoelectric properties
- High performance InxCeyCo4Sb12 thermoelectric materials with in situ forming nanostructured InSb phase
- Improved thermoelectric properties of AgSbTe2 based compounds with nanoscale Ag2Te in situ precipitates
- Nanostructures in high-performance (GeTe)x(AgSbTe2)100−x thermoelectric materials
- Surface-dominated transport and enhanced thermoelectric figure of merit in topological insulator Bi(1.5)Sb(0.5)Te(1.7)Se(1.3).
- The thermal conductivity of silver antimony telluride
- Thermoelectric figure of merit of a one-dimensional conductor.
- Cubic AgPbmSbTe2+m: Bulk Thermoelectric Materials with High Figure of Merit
- Bismuth telluride nanotubes and the effects on the thermoelectric properties of nanotube-containing nanocomposites
- Intrinsically minimal thermal conductivity in cubic I-V-VI2 semiconductors.
- Dense dislocation arrays embedded in grain boundaries for high-performance bulk thermoelectrics
- Materials for thermoelectric energy conversion
- High thermoelectric performance of Yb0.26Co4Sb12/yGaSb nanocomposites originating from scattering electrons of low energy
- Unique nanostructures and enhanced thermoelectric performance of melt-spun BiSbTe alloys
- Self-Assembled Nanometer Lamellae of Thermoelectric PbTe and Sb2Te3 with Epitaxy-like Interfaces
- Enhancement of thermoelectric properties of Yb-filled skutterudites by an Ni-Induced “core–shell” structure
- Silicon nanowires as efficient thermoelectric materials
- Cooling, Heating, Generating Power, and Recovering Waste Heat with Thermoelectric Systems
- Enhancement of Thermoelectric Figure of Merit for Bi0.5Sb1.5Te3 by Metal Nanoparticle Decoration
- Stress-induced growth of single-crystalline lead telluride nanowires and their thermoelectric transport properties
Cited by
- Optimization of poly(vinylidene fluoride) membranes for enhanced power density of thermally driven electrochemical cells
- Topological insulators for thermoelectrics
- Improved thermoelectric properties of Re substituted HMS by inducing phonon scattering and energy filtering effect at grain boundary interfaces.
- Transport properties of AgPb16SbTe18 prepared by the inclusion of nano AgSbTe2 into PbTe matrix
- Thermoelectric properties of zinc-doped Cu5Sn2Se7 and Cu5Sn2Te7.
- Promising Thermoelectric Performance in Two-Dimensional Semiconducting Boron Monolayer
- Enhancement in thermoelectric properties of n-type (La0.7Sr0.3MnO3)0.5.(NiO)0.5: composite and nano-structure effect
- Optical Properties of Solar Absorber Materials and Structures
- The optimum configuration design of a nanostructured thermoelectric device with resonance tunneling
- Interconnected effects of direct Gd doping and accompanying indirect Te-stoichiometry destroying on the thermoelectric properties of Te-rich Bi2-Gd Te3+ compounds
- Enhanced electrical outputs of thin-film solar thermoelectric generator with optimized metal/dielectric multilayered solar selective absorber
- Topological thermoelectrics: New opportunities and challenges
- An Innovative Tubular Thermoelectric Generator (TTEG) for Enhanced Waste Heat Recovery in Industrial and Automotive Applications
- Advancements in thermoelectric materials: optimization strategies for enhancing energy conversion
- Innovative Tubular Thermoelectric Generator (TTEG) for Enhanced Waste Heat Recovery in Industrial and Automotive Applications
- Nanostructured Materials: Enhancing the Thermoelectric Performance
- Thermoelectric Nanomaterials
- Nanostructured Thermoelectric Materials: Current Research and Future Challenges
- Ultralow Lattice Thermal Conductivity and Enhanced Thermoelectric Performance Enabled by CuInSe2 Alloying in AgSbTe2
- Effect of ultra-short laser nanostructuring of material surfaces on the evolution of their thermoelectric properties
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