DocumentCode :
2011624
Title :
Thermoelectric properties and local electronic structure of rare earth-doped Ca3Co2O6
Author :
Nong, N.V. ; Ohtaki, M.
Author_Institution :
Interdisciplinary Graduate Sch. of Eng. Sci., Kyushu Univ., Fukuoka
fYear :
2006
fDate :
6-10 Aug. 2006
Firstpage :
62
Lastpage :
65
Abstract :
Thermoelectric properties of a series of rare earth metal-doped polycrystalline samples of (Ca1-xRx)3Co 2O6 with R = Gd, Tb, Dy and Ho (x = 0 - 0.1) were investigated in the temperature range from 300 K to 1300 K. In a high temperature region above 900 K, a partial rare earth substitution with R 3+ for Ca2+ resulted in appreciable increase in the Seebeck coefficient (S). However, the S value decreased abruptly at low temperatures, and turned to negative values for the Gd- and Tb-doped samples at temperatures below 400 K. With decreasing ionic radii of rare earth elements (Gd3+ > Tb3+ > Dy3+ > Ho3+), the S values increased, while the thermal conductivity (kappa) decreased particularly at temperatures above 700 K. Contrastingly, the influence of rare earth metal substitution on the electrical resistivity (rho) was small; in high temperature region the rho values increased only slightly with decreasing ionic radii of rare earth metals. High-temperature thermoelectric figure-of-merit (Z) of the samples was thereby improved by the late rare-earth metal substitution for Ca2+, particularly for those with Ho3+. A maximum Z value of the Ho-doped sample for x = 0.03 was 1.83 times 10-4 K-1 at 1100 K as compared with 0.37 times 10-4 K-1 for non-doped sample. The electronic structure of the samples was also investigated by x-ray photoemission spectroscopy (XPS) technique. The charge-transfer satellite structure of Co 2p core-level spectra was observed for the Gd-and Tb-doped samples, while the satellite is negligible for the other samples
Keywords :
Seebeck effect; X-ray photoelectron spectra; atom-molecule reactions; calcium compounds; chemical exchanges; cobalt compounds; doping; dysprosium; electrical resistivity; electronic structure; gadolinium; holmium; positive ions; terbium; thermal conductivity; 300 to 1300 K; Ca3Co2O6:Dy; Ca3Co2O6:Gd; Ca3Co2O6:Ho; Ca3Co2O6:Tb; Seebeck coefficient; XPS; charge transfer satellite structure; doping; electrical resistivity; local electronic structure; partial rare earth substitution; rare earth metal doped polycrystalline; thermal conductivity; thermoelectric property; x-ray photoemission spectroscopy; Crystalline materials; Crystals; Electric resistance; Geoscience; Powders; Satellites; Spectroscopy; Temperature distribution; Thermal conductivity; Thermoelectricity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermoelectrics, 2006. ICT '06. 25th International Conference on
Conference_Location :
Vienna
ISSN :
1094-2734
Print_ISBN :
1-4244-0811-3
Electronic_ISBN :
1094-2734
Type :
conf
DOI :
10.1109/ICT.2006.331270
Filename :
4133236
Link To Document :
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