Half-Heusler thermoelectrics: a complex class of materials
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Summary
Half-Heusler thermoelectrics first attracted interest in the late-1990s and are currently undergoing a renaissance, driven by improved synthesis, processing and characterisation methods, leading to increases in the thermoelectic figure of merit and the observation of novel phenomena.
- Type
- article
- Published
- 2014-10-02
- Cited by
- 196
- References
- 88
- Access
- Open access
- OpenAlex
- https://openalex.org/W2091369729
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37796845
Keywords
Figure of merit, Thermoelectric materials, Thermoelectric effect, Materials science, Condensed matter physics
References
- Thermal Conductivity: Theory, Properties, and Applications
- Ultralow thermal conductivity and high thermoelectric figure of merit in SnSe crystals
- Effects of partial substitution of Ni by Pd on the thermoelectric properties of ZrNiSn-based half-Heusler compounds
- Effect of Sb doping on the thermoelectric properties of Ti-based half-Heusler compounds, TiNiSn1−xSbx
- Enhancement of thermoelectric figure-of-merit at low temperatures by titanium substitution for hafnium in n-type half-Heuslers Hf0.75−xTixZr0.25NiSn0.99Sb0.01
- Structural stability of Ni-containing half-Heusler compounds
- Semiconducting Ge clathrates: Promising candidates for thermoelectric applications
- Influence of Ni nanoparticle addition and spark plasma sintering on the TiNiSn–Ni system: Structure, microstructure, and thermoelectric properties
- Electronic structure of rare-earth nickel pnictides: Narrow-gap thermoelectric materials
- Thermal conductivity of half-Heusler compounds from first-principles calculations
- Effect of substitutions on the thermoelectric figure of merit of half-Heusler phases at 800 °C
- High figure of merit in (Ti,Zr,Hf)NiSn half-Heusler alloys
- Strain field fluctuation effects on lattice thermal conductivity of ZrNiSn-based thermoelectric compounds
- Electronic phase diagram of the XTZ (X=Fe, Co, Ni; T=Ti, V, Zr, Nb, Mn; Z=Sn, Sb) semi-Heusler compounds
- Introduction of resonant states and enhancement of thermoelectric properties in half-Heusler alloys
- Interfaces in bulk thermoelectric materials: A review for Current Opinion in Colloid and Interface Science
- (Zr,Hf)Co(Sb,Sn) half-Heusler phases as high-temperature (>700°C) p-type thermoelectric materials
- Material and manufacturing cost considerations for thermoelectrics
- Enhanced thermoelectric figure of merit of p-type half-Heuslers.
- Simple rules for the understanding of Heusler compounds
Cited by
- Thermoelectric properties of heavily boron- and phosphorus-doped silicon
- Synthesis and thermoelectric properties of half-Heusler alloy YNiBi
- On the constitution and thermodynamic modelling of the system Zr-Ni-Sn
- Uncovering high thermoelectric figure of merit in (Hf,Zr)NiSn half-Heusler alloys
- Improving the thermoelectric performance of TiNiSn half-Heusler via incorporating submicron lamellae eutectic phase of Ti70.5Fe29.5: a new strategy for enhancing the power factor and reducing the thermal conductivity
- Charge carrier concentration optimization of thermoelectric p-type half-Heusler compounds
- Impact of vacancy ordering on thermal transport in crystalline phase-change materials
- Thermoelectric properties of Fe and Al double substituted MnSiγ (γ~1.73)
- Half-metallic fully compensated ferrimagnetism in C1 b -type half Heusler compounds Mn 2 Si 1−x Ge x
- Metal Distributions, Efficient n-Type Doping, and Evidence for in-Gap States in TiNiMySn (M = Co, Ni, Cu) half-Heusler Nanocomposites
- Effect of Spark Plasma Sintering on the Structure and Properties of Ti1−xZrxNiSn Half-Heusler Alloys
- Evidence for localized moment picture in Mn-based Heusler compounds.
- Fine tuning of thermoelectric performance in phase-separated half-Heusler compounds
- Three-dimensional multimodal imaging and analysis of biphasic microstructure in a Ti-Ni-Sn thermoelectric material
- High Efficiency Half‐Heusler Thermoelectric Materials for Energy Harvesting
- Compositions and thermoelectric properties of XNiSn (X = Ti, Zr, Hf) half-Heusler alloys
- Half‐Heusler materials as model systems for phase‐separated thermoelectrics
- The effect of an isoelectronic Ti–Zr substitution on Heusler nanoprecipitation and the thermoelectric properties of a (Ti0.2,Zr0.8)Ni1.1Sn half-Heusler alloy
- Microstructure and thermoelectric properties of Sb doped Hf0.25Zr0.75NiSn Half-Heusler compounds with improved carrier mobility
- Influence of main-group element on half-metallic properties in half-Heusler compound
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