Traversing the Metal‐Insulator Transition in a Zintl Phase: Rational Enhancement of Thermoelectric Efficiency in Yb14Mn1−xAlxSb11
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- Type
- article
- Published
- 2008-09-23
- Cited by
- 307
- References
- 20
- OpenAlex
- https://openalex.org/W1984597131
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:137266967
Keywords
Materials science, Thermoelectric effect, Seebeck coefficient, Figure of merit, Electrical resistivity and conductivity
References
- Low-temperature thermoelectric properties of Yb14MSb11 (M = Mn, Zn)
- Thermoelectric, transport, and magnetic properties of the polaron semiconductor FexCr3-xSe4
- Electrical characterization Of SiGe thin films
- XMCD characterization of the ferromagnetic state of Yb14MnSb11.
- Estimation of the thermal band gap of a semiconductor from seebeck measurements
- Spin entropy as the likely source of enhanced thermopower in NaxCo2O4
- X-ray photoelectron spectroscopy studies of Yb14MnSb11 and Yb14ZnSb11
- Darstellung und Struktur der Verbindung Ca14AlSb11
- Kondo Lattice Behavior in the Ordered Dilute Magnetic Semiconductor Yb_14-xLa_xMnSb_11
- Measurement of Seebeck coefficient using a light pulse
- Improved Thermoelectric Performance in Yb14Mn1-xZnxSb11 by the Reduction of Spin-Disorder Scattering.
- Thermoelectric properties of pressure-sintered Si0.8Ge0.2 thermoelectric alloys
- Theory of Metals
- Yb14MnSb11: New High Efficiency Thermoelectric Material for Power Generation
- Optical study of interactions in a d-electron Kondo lattice with ferromagnetism.
- Structure and Ferromagnetism of the Rare-Earth Zintl Compounds: Yb14MnSb11 and Yb14MnBi11
- Bonding, moment formation, and magnetic interactions in Ca14MnBi11 and Ba14MnBi11
- Complex thermoelectric materials.
- Magnetism: Molecules to Materials III
Cited by
- Structure and properties of single crystalline CaMg2Bi2, EuMg2Bi2, and YbMg2Bi2.
- Transport properties of Zintl phase Yb1-xCaxCd2Sb2 at low temperature
- Beneficial influence of Ru on the thermoelectric properties of Mo3Sb7
- Transport and magnetic properties of Mo2.5Ru0.5Sb7-xTex
- An Analytical Model for the Influence of Contact Resistance on Thermoelectric Efficiency
- Towards high efficiency segmented thermoelectric unicouples
- High-Temperature Transport in Lanthanum Telluride and Other Modern Thermoelectric Materials
- Synthesis and thermoelectric properties of higher manganese silicides for waste heat recovery
- The effect of light rare earth element substitution in Yb14MnSb11 on thermoelectric properties
- Eu3Ir2In15: A Mixed-Valent and Vacancy-Filled Variant of the Sc5Co4Si10 Structure Type with Anomalous Magnetic Properties.
- Thermoelectric properties of the Ca(5)Al(2-x)In(x)Sb(6) solid solution.
- Thermoelectric transport properties of CaMg 2 Bi 2 , EuMg 2 Bi 2 , and YbMg 2 Bi 2
- High-temperature transport properties of complex antimonides with anti-Th3P4 structure.
- The Zintl Compound Ca5Al2Sb6 for Low‐Cost Thermoelectric Power Generation
- Transport properties of the layered Zintl compound SrZnSb2
- Zintl phase compounds AM2Sb2 (A=Ca, Sr, Ba, Eu, Yb; M=Zn, Cd) and their substitution variants: a class of potential thermoelectric materials
- Influence of the Triel Elements (M = Al, Ga, In) on the Transport Properties of Ca_5M_2Sb_6 Zintl Compounds
- Electronic structure and transport in thermoelectric compounds AZn2Sb2 (A = Sr, Ca, Yb, Eu).
- Phase characterization, thermal stability, high-temperature transport properties, and electronic structure of rare-earth Zintl phosphides Eu3M2P4 (M = Ga, In).
- The Lorenz function: Its properties at optimum thermoelectric figure-of-merit
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