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Volumn 39, Issue 9, 2010, Pages 1861-1868
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Thermoelectric properties as a function of electronic band structure and microstructure of textured materials
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Author keywords
antimony telluride; bismuth antimony telluride; bismuth telluride; Boltzmann; COMSOL; density of states; effective mass; electrical conductivity; electronic band structure; Fermi level; finite element method; inertial effective mass; invariance method; lattice thermal conductivity; Seebeck; texture; textured materials; thermal conductivity; Thermoelectric; transport properties
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Indexed keywords
ANTIMONY TELLURIDE;
BISMUTH ANTIMONY TELLURIDE;
BISMUTH TELLURIDE;
BOLTZMANN;
COMSOL;
DENSITY OF STATE;
EFFECTIVE MASS;
ELECTRICAL CONDUCTIVITY;
ELECTRONIC BAND STRUCTURE;
LATTICE THERMAL CONDUCTIVITY;
SEEBECK;
TEXTURED MATERIALS;
THERMOELECTRIC;
ANTIMONY;
BACKSCATTERING;
BAND STRUCTURE;
BISMUTH;
CARBON FIBER REINFORCED PLASTICS;
CRYSTAL LATTICES;
ELECTRIC CONDUCTIVITY;
FERMI LEVEL;
FINITE ELEMENT METHOD;
SPARK PLASMA SINTERING;
STRUCTURAL PROPERTIES;
TEXTURES;
THERMOANALYSIS;
THERMOELECTRIC EQUIPMENT;
THERMAL CONDUCTIVITY;
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EID: 77956231721
PISSN: 03615235
EISSN: None
Source Type: Journal
DOI: 10.1007/s11664-009-1059-x Document Type: Article |
Times cited : (34)
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References (21)
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