Applied Physics Letters · 2009 · 581 citations · 15 references
Materials ScienceMaterials EngineeringMagnetic PropertiesCoherent Grain BoundaryHigh Temperature MaterialsSinteringUnique NanostructuresEngineeringApplied PhysicsMelt Spinning TechniqueThermoelectricsSolid-state ChemistryThermoelectric MaterialHigh-performance MaterialNanocrystalline MaterialFunctional MaterialsThermal ConductivityThermal Property
We report a melt spinning technique followed by a quick spark plasma sintering procedure to fabricate high-performance p-type Bi0.52Sb1.48Te3 bulk material with unique microstructures. The microstructures consist of nanocrystalline domains embedded in amorphous matrix and 5–15 nm nanocrystals with coherent grain boundary. The significantly reduced thermal conductivity leads to a state-of-the-art dimensionless figure of merit ZT∼1.56 at 300 K, more than 50% improvement of that of the commercial Bi2Te3 ingot materials.
15
Complex thermoelectric materials
G. Jeffrey Snyder, Eric S. Toberer · Nature Materials · 2008 · 10.7K citations
Materials Science, Engineering, Complex Thermoelectric Materials +7
High-Thermoelectric Performance of Nanostructured Bismuth Antimony Telluride Bulk Alloys
Bed Poudel, Qing Hao, Yi Ma et al. · Science · 2008 · 5.4K citations
Materials Science, Materials Engineering, Electrical Engineering +15
Thin-film thermoelectric devices with high room-temperature figures of merit
R. Venkatasubramanian, E. Siivola, T.S. Colpitts et al. · Nature · 2001 · 5.1K citations
New Directions for Low‐Dimensional Thermoelectric Materials
M. S. Dresselhaus, Gang Chen, Ming Tang et al. · Advanced Materials · 2007 · 3.9K citations