Title :
Thermoelectrical figure of merit in PbTe-based solid solutions with phonon scattering by off-center impurities
Author :
Fedorov, M.I. ; Gurieva, E.A. ; Konstantinov, P.P. ; Prokofeva, L.V. ; Ravich, Yu.I.
Author_Institution :
A.F.Ioffe Phys.-Tech. Inst., Russian Acad. of Sci., St. Petersburg, Russia
Abstract :
The Seebeck coefficient and the electrical and thermal conductivities (S, σ and κ) of ternary PbTe1-xSex (x = 0.1 and 0.3) and quaternary PbTe1-2xSexSx (x = 0.025, 0.05, 0.1, and 0.15) solid solutions have been studied. Polycrystalline samples with an electron density of (0.5-5.0) × 1018 cm-3 were used; their quality was monitored by comparing the measured and calculated mobility values at 85 K. A considerable decrease in mobility and an anomalous trend in the σ(T) curve near 77 K were revealed in quaternary alloys with x ≥ 0.1; for x = 0.15, unusual behavior of κ(T) was also found. According to estimates, the lattice thermal conductivity of this material is temperature-independent in the 80- to 300-K temperature range. This means that a reduction in phonon-phonon scattering with an increase in temperature is completely compensated by an increase in the scattering on impurities. The observed anomalies of σ(T) and κ(T) are considered assuming the possible of off-center location of sulfur atoms at the lattice sites. The thermoelectric figure of merit Z of the studied alloys has been determined in the range 80-300 K. In spite of decreasing mobility, the maximum Z was obtained in a quaternary compound with x = 0.1.
Keywords :
IV-VI semiconductors; Seebeck effect; impurity scattering; lead compounds; phonon-impurity interactions; thermal conductivity; thermoelectricity; 77 K; 80 to 300 K; 85 K; PbTe-based solid solutions; PbTe1-2xSexSx; PbTe1-xSex; electrical conductivities; electron density; lattice thermal conductivity; mobility values; off-center impurities; phonon scattering; phonon-phonon scattering; thermal conductivities; thermoelectric figure of merit; thermoelectrical figure of merit; Density measurement; Electron mobility; Impurities; Lattices; Monitoring; Phonons; Scattering; Solids; Thermal conductivity; Thermoelectricity;
Conference_Titel :
Thermoelectrics, 2003 Twenty-Second International Conference on - ICT
Print_ISBN :
0-7803-8301-X
DOI :
10.1109/ICT.2003.1287501