Dense dislocation arrays embedded in grain boundaries for high-performance bulk thermoelectrics
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Summary
A dramatic improvement of efficiency is shown in bismuth telluride samples by quickly squeezing out excess liquid during compaction, which presents an attractive path forward for thermoelectrics.
- Type
- article
- Published
- 2015-04-03
- Cited by
- 1,855
- References
- 59
- OpenAlex
- https://openalex.org/W2013073809
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:31412977
Keywords
Grain boundary, Materials science, Condensed matter physics, Thermoelectric effect, Phonon scattering
References
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- Interfaces in bulk thermoelectric materials: A review for Current Opinion in Colloid and Interface Science
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- The Criteria for Beneficial Disorder in Thermoelectric Solid Solutions
- Effective thermal conductivity of polycrystalline materials with randomly oriented superlattice grains
- Review: liquid phase sintering
- A high temperature apparatus for measurement of the Seebeck coefficient.
- A review of thermoelectric cooling: Materials, modeling and applications
- Cooling performance of integrated thermoelectric microcooler
Cited by
- Anomalous thermoelectricity in strained Bi2Te3 films
- Thermoelectric Properties of Bi2Te3: CuI and the Effect of Its Doping with Pb Atoms
- Design of Transition-Metal Nitride Thin Films for Thermoelectrics
- Melting and solidification of bismuth antimony telluride under a high magnetic field: A new route to high thermoelectric performance
- A Facile Surfactant-Assisted Reflux Method for the Synthesis of Single-Crystalline Sb2Te3 Nanostructures with Enhanced Thermoelectric Performance.
- Towards higher thermoelectric performance of Bi 2 Te 3 via defect engineering
- Thermoelectric Performance Enhancement of CeFe4Sb12p-Type Skutterudite by Disorder on the Sb4 Rings Induced by Te Doping and Nanopores
- Different site occupancies in substitution variants of Mo 3 Sb 7
- Effect of Sn Doping in (Bi0.25Sb0.75)2−xSnxTe3 (0 ≤ x ≤ 0.1) on Thermoelectric Performance
- Strong correlation between the crystal structure and the thermoelectric properties of pavonite homologue Cux+yBi5−yCh8 (Ch = S or Se) compounds
- Band and scattering tuning for high performance thermoelectric Sn1−xMnxTe alloys
- Thermoelectric transport properties of pristine and Na-doped SnSe(1-x)Te(x) polycrystals.
- High performance n-type bismuth telluride based alloys for mid-temperature power generation
- Electrical transport properties of AlAs under compression: reversible boundary effect.
- Improvement of Thermoelectric Properties of Bi0.4Sb1.6Te3 with Addition of Nanoscale Zinc Oxide Particles
- Skutterudites as thermoelectric materials: revisited
- Engineering Nanostructural Routes for Enhancing Thermoelectric Performance: Bulk to Nanoscale
- Nanocomposites for thermoelectrics and thermal engineering
- Thermoelectric properties of Si/SiB3 sub-micro composite prepared by melt-spinning technique
- Enhanced thermoelectric performance of n-type Cu0.008Bi2Te2.7Se0.3 by band engineering
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