Local structure of interstitial Zn in β‐Zn4Sb3
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- Type
- article
- Published
- 2007-11-01
- Cited by
- 33
- References
- 20
- Access
- Open access
- OpenAlex
- https://openalex.org/W1976633985
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93228116
Keywords
Metastability, Energetics, Interstitial defect, Thermoelectric effect, Thermal diffusivity
References
- Nanoscale alpha-structural domains in the phonon-glass thermoelectric material beta-Zn4Sb3
- Dynamic local distortions in KNbO3
- Generalized Gradient Approximation Made Simple.
- The solid electrolyte transition and melting in salts
- Cation tracer diffusion in the thermoelectric materials Cu3Mo6Se8 and “β-Zn4Sb3”
- Generalized norm-conserving pseudopotentials.
- Structure and bonding of zinc antimonides: complex frameworks and narrow band gaps.
- Designing meaningful density functional theory calculations in materials science—a primer
- Force and total-energy calculations for a spatially compact adsorbate on an extended, metallic crystal surface.
- Preparation and thermoelectric properties of semiconducting Zn4Sb3
- Low-Temperature Structural Transitions in the Phonon-Glass Thermoelectric Material β-Zn4Sb3: Ordering of Zn Interstitials and Defects
- The diffusive motion of silver ions in α-AgI: Results from quasielastic neutron scattering
- Disordered zinc in Zn4Sb3 with phonon-glass and electron-crystal thermoelectric properties
- Interstitial Zn atoms do the trick in thermoelectric zinc antimonide, Zn4Sb3: a combined maximum entropy method X-ray electron density and ab initio electronic structure study.
- “Model”
- INTERRELATION BETWEEN STRUCTURAL AND ION-DIFFUSION DYNAMIC CHARACTERISTICSOF ALPHA -AGI
Cited by
- Origin of the low thermal conductivity of the thermoelectric material β-Zn4Sb3: An ab initio theoretical study
- Defect structure of thermoelectric Zn4Sb3
- Phase Stability and Defect Behavior in Complex Thermoelectric Zinc-Antimonides
- Atomistic mechanisms governing structural stability change of zinc antimony thermoelectrics
- Predicted electronic and thermodynamic properties of a newly discovered Zn8Sb7 phase.
- Interfaces in bulk thermoelectric materials: A review for Current Opinion in Colloid and Interface Science
- First principles study of defect formation in thermoelectric zinc antimonide, β-Zn4Sb3
- Large-scale synthesis and in situ functionalization of Zn3P2 and Zn4Sb3 nanowire powders.
- Properties of thermoelectric Zn–Sb type material directly synthesized by spark plasma sintering
- Thermoelectric studies in β-Zn4Sb3—the complex interdependence between thermal stability, thermoelectric transport, and zinc content
- Composition and the thermoelectric performance of β-Zn4Sb3
- Complex thermoelectric materials.
- Multiple phase formation and its influence on lattice thermal conductivity in β-Zn_4Sb_3
- Nanovoids in thermoelectric β-Zn4Sb3: A possibility for nanoengineering via Zn diffusion
- Nanoscale inclusions in the phonon glass thermoelectric material Zn4Sb3
- Unexpected high-temperature stability of β-Zn4Sb3 opens the door to enhanced thermoelectric performance.
- Theory of Carrier Transport From First Principles: Applications in Photovoltaic and Thermoelectric Materials
- Low thermal conductivity in nanocrystalline Zn3P2
- Stability, electronic structures and thermoelectric properties of binary Zn–Sb materials
- Nanoscale Engineering for the Design of Efficient Inorganic-Organic Hybrid Thermoelectrics
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