Title :
Reduction of thermal conductivity and origin of carrier in alkaline-earth hexaborides
Author :
Takhashi, Norihito ; Terui, Manabu ; Ueda, Noriyoshi ; Takeda, Masatoshi
Author_Institution :
Dept. of Mech. Eng., Nagaoka Univ. of Technol., Japan
Abstract :
Mixed crystals of divalent hexaboride (CaB6 and SrB6) were prepared and their thermoelectric properties were measured. Seebeck coefficient and electrical conductivity of the mixed crystals were intermediate between those of CaB6 and SrB6 single phase. Thermal conductivities of the mixed crystals were lower than the both single phases. As a consequence, highest figure-of-merit was obtained at the vicinity of Ca0.5Sr0.5B6, indicating that such a mixed crystallization using two or more hexaborides is effective to improve thermoelectric performance of these materials. For further improvement in their thermoelectric performance, the origin of charge carrier should be elucidated to control the electric properties. Rietveld analysis performed on X-ray diffraction data for CaB6 revealed that there is a deficiency of boron in the sintered specimen. The boron deficiency appears to be one of possible origins of charge carrier.
Keywords :
Seebeck effect; X-ray diffraction; calcium compounds; crystallisation; electrical conductivity; strontium compounds; thermal conductivity; Ca0.5Sr0.5B6; Rietveld analysis; Seebeck coefficient; X-ray diffraction; alkaline-earth hexaborides; boron deficiency; charge carrier; electrical conductivity; mixed crystallization; mixed crystals; thermal conductivity; thermoelectric properties; Boron; Charge carriers; Crystalline materials; Crystallization; Crystals; Performance analysis; Strontium; Thermal conductivity; Thermoelectricity; X-ray diffraction;
Conference_Titel :
Thermoelectrics, 2005. ICT 2005. 24th International Conference on
Print_ISBN :
0-7803-9552-2
DOI :
10.1109/ICT.2005.1519977