Journal of the Japan Society of Powder and Powder Metallurgy
Online ISSN : 1880-9014
Print ISSN : 0532-8799
ISSN-L : 0532-8799
Paper
Metal Doping Effects on the Conduction Type and the Thermoelectric Properties of β-FeSi2
Tao JiangTakashi SakaiTomonori FukuokaMasaaki Miyamoto
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JOURNAL OPEN ACCESS

2010 Volume 57 Issue 4 Pages 247-251

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Abstract
Fe, Si and metal (Mn, Cu, Al) powders were mixed by ball-milling for 1 hour in an argon atmosphere. Mixtures of Fe, Si and metal (Mn, Cu, Al) powders were hot-pressed at 1373 K for 1 hour under 46.8 MPa and heat treated at 1123 K for 12 hours in an argon atmosphere. The conduction type of FeSix depends strongly on the composition ratio (x) of Si/Fe. The Seebeck coefficient at the composition range of 1.80≤x≤2.08 is positive, but negative in the range of 2.10≤x≤2.30 in the temperature range 300-780 K. One metal doping (Cu or Al) to the FeSi2.06, enhanced the positive value of Seebeck coefficient (α) and that to the FeSi2.15, enhanced the negative value of α. On the other hand, both Mn doped FeSi2.06 and FeSi2.15 showed the positive value of α. Doping effects of two metal elements (Mn-Cu, Mn-Al) to the FeSi2.06 were investigated. Doping of Mn-Al to the FeSi2.06 enhanced the Seebeck coefficient (α) and lowered the resistivity at high temperature range. The Seebeck coefficient of Mn-Al doped β-FeSi2 (Fe0.97Mn0.03Si2.06Al0.05) showed the maximum value 279.15 [μV/K] at 773 [K].
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