Title :
Effects of the addition of Co on the thermoelectric properties of the AlPdMn quasicrystalline system
Author :
Pope, A.L. ; Alboni, P.N. ; Tritt, T.M. ; Gagnon, R. ; Legault, S. ; Strom-Olsen, J.
Author_Institution :
Dept. of Phys. & Astron., Clemson Univ., SC, USA
fDate :
Aug. 29 1999-Sept. 2 1999
Abstract :
Partially due to their lack of periodic structure, quasicrystals have inherently low thermal conductivity, on the order of 1-3 W/mK. AlPdMn quasicrystals exhibit reasonable values of electrical conductivity (500-800 (/spl Omega//spl middot/cm/sup -1/)) and thermopower (80 /spl mu/V/K) with respect to thermoelectrics. In an effort to further increase the thermopower and hopefully decrease the thermal conductivity via phonon scattering, a fourth element was added to the nominally Al/sub 70/Pd/sub 10/Mn/sub 10/ quasicrystal. X-ray data confirms that the addition of the additional element does not alter the quasiperiodicity of the sample. Several Al/sub 70/Pd/sub 22.5/Mn/sub 7.5/ quasicrystal ingots were grown. Two subsequent batches of Al/sub 70/Pd/sub 22.5/5Mn/sub 7.5/ were grown, adding up to 2% Co. Thermopower, electrical conductivity, and thermal conductivity were measured on each sample over a broad temperature range and the results are discussed.
Keywords :
alloying additions; aluminium alloys; cobalt alloys; electrical conductivity; electron-phonon interactions; manganese alloys; palladium alloys; quasicrystals; thermal conductivity; thermoelectric power; 500 to 800 (ohmcm)/sup -1/; AlPdMnCo; Co addition; electrical conductivity; phonon scattering; quasicrystal; thermal conductivity; thermoelectric properties; thermopower; Conducting materials; Crystalline materials; Doping; Lattices; Power generation; Refrigeration; Temperature; Thermal conductivity; Thermoelectric devices; Thermoelectricity;
Conference_Titel :
Thermoelectrics, 1999. Eighteenth International Conference on
Conference_Location :
Baltimore, MD, USA
Print_ISBN :
0-7803-5451-6
DOI :
10.1109/ICT.1999.843462