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Volumn 41, Issue 6, 2012, Pages 1232-1236
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Improved thermoelectric performance in cu-based ternary chalcogenides using S for Se substitution
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Author keywords
solid solution; thermal conductivity; Thermoelectric
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Indexed keywords
ATOMIC MASS;
COMBINED EFFECT;
CU-BASED;
ELECTRONEGATIVITY DIFFERENCE;
ENVIRONMENTALLY BENIGN;
HIGH TEMPERATURE;
LATTICE THERMAL CONDUCTIVITY;
P-TYPE;
PHONON MEAN FREE PATH;
SELENIDES;
SIZE DIFFERENCE;
TEMPERATURE RANGE;
TERNARY CHALCOGENIDES;
THERMOELECTRIC;
THERMOELECTRIC MATERIAL;
THERMOELECTRIC PERFORMANCE;
ANTIMONY;
ANTIMONY COMPOUNDS;
CHALCOGENIDES;
CHEMICAL BONDS;
ELECTRONEGATIVITY;
HOLE MOBILITY;
PHASE CHANGE MEMORY;
SELENIUM COMPOUNDS;
SOLID SOLUTIONS;
THERMAL CONDUCTIVITY;
THERMOELECTRICITY;
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EID: 84862162737
PISSN: 03615235
EISSN: None
Source Type: Journal
DOI: 10.1007/s11664-012-1969-x Document Type: Article |
Times cited : (38)
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References (13)
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