High thermoelectric properties of p-type pseudobinary (Cu4Te3)x–(Bi0.5Sb1.5Te3)1−x alloys prepared by spark plasma sintering
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2745413
Reference22 articles.
1. High thermoelectric performance at low temperature of p-Bi1.8Sb0.2Te3.0 grown by the gradient freeze method from Te-rich melt
2. Fabrication and thermoelectric properties of p-type Bi0.5Sb1.5Te3 compounds by ingot extrusion
3. Microstructures and thermoelectric properties of p-type pseudo-binary AgxBi0.5Sb1.5−xTe3 (x=0.05–0.4) alloys prepared by cold pressing
4. Thermoelectric properties of Cu-doped p-type pseudo-binary CuxBi0.5Sb1.5−xTe3 (x=0.05–0.4) alloys prepared by spark plasma sintering
5. Microstructures and thermoelectric properties of p-type pseudo-binary Bi–Sb–Te alloys with partial substitution of Ga for Sb prepared by spark plasma sintering
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1. Organic/Inorganic Hybrid Design as a Route for Promoting the Bi 0.5 Sb 1.5 Te 3 for High‐Performance Thermoelectric Power Generation;Advanced Functional Materials;2022-03-11
2. Nanoparticles in Bi0.5Sb1.5Te3: A prerequisite defect structure to scatter the mid-wavelength phonons between Rayleigh and geometry scatterings;Acta Materialia;2020-02
3. Influence of Pd Doping on Electrical and Thermal Properties of n-Type Cu0.008Bi2Te2.7Se0.3 Alloys;Materials;2019-12-06
4. Beneficial Influence of Co‐Doping on Thermoelectric Efficiency with Respect to Electronic and Thermal Transport Properties;physica status solidi (a);2019-03-26
5. Synergistic Influence of Cu Intercalation on Electronic and Thermal Properties of n-Type CuxBi2Te2.7Se0.3 Polycrystalline Alloys;Journal of Electronic Materials;2019-01-25
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