Publication | Closed Access
Hydrothermal Synthesis and Thermoelectric Transport Properties of Impurity‐Free Antimony Telluride Hexagonal Nanoplates
166
Citations
28
References
2008
Year
EngineeringCrystal Growth TechnologyThermoelectricsSolid-state ChemistryChemistryThermal ConductivityTransport PropertiesImpurity-free Single-crystalline AntimonyThermal ConductionSb2te3 Hexagonal NanoplatesHydrothermal SynthesisMaterials ScienceNanotechnologyOxide ElectronicsThermal TransportHexagonal NanoplatesMaterial AnalysisNanomaterialsApplied PhysicsThermoelectric MaterialThermoelectric Transport PropertiesFunctional Materials
Impurity-free single-crystalline antimony telluride hexagonal nanoplates (see figure) are synthesized by a facile and quick hydrothermal treatment without any organic additives or templates. The inherent crystal structure is the driving force for the growth of these Sb2Te3 hexagonal nanoplates. Films of these nanoplates shows p-type behavior, and exhibit a promisingly high Seebeck coefficient of 125 µV K−1 at room temperature.
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