MAGNETIC, TRANSPORT, AND STRUCTURAL-PROPERTIES OF FE1-XIRXSI

被引:140
作者
SALES, BC [1 ]
JONES, EC [1 ]
CHAKOUMAKOS, BC [1 ]
FERNANDEZBACA, JA [1 ]
HARMON, HE [1 ]
SHARP, JW [1 ]
VOLCKMANN, EH [1 ]
机构
[1] MARLOW IND,DALLAS,TX 75238
来源
PHYSICAL REVIEW B | 1994年 / 50卷 / 12期
关键词
D O I
10.1103/PhysRevB.50.8207
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Magnetic susceptibility, resistivity, Seebeck, Hall, and powder x-ray and neutron-diffraction measurements were used to characterize single crystals of FeSi and polycrystalline samples of Fe1-xIrxSi for x < 0.2. The Rietveld refinement of low-temperature powder neutron-diffraction data on FeSi showed no change in the space group and no structural anomalies from 4 to 300 K. Magnetic and transport data from 4 to 700 K are consistent with the characterization of FeSi as a narrow-gap semiconductor (E(g) = 1200 K) with strong intrasite correlations for the states just below and above the gap. Fits to the magnetic susceptibility and resistivity data suggest that the magnetic (or direct) gap may be larger than the transport (indirect) gap. Electron mobilities in FeSi are very low (3-5 cm(2)/Vs). The thermopower of FeSi has a large positive peak (500 mu V/K) at 50 K that is attributed to an unusually strong phonon-drag mechanism. Indium acts as an electron donor in the Fe1-xIrxSi alloys. As the iridium doping level is increased, there is a rapid decrease in the low-temperature resistivity and a large negative (- 140 mu V/K) phonon-drag contribution to the thermopower. For Peltier cooling applications, a maximum value for ZT of 0.07 was found for a Fe0.95Ir0.05Si alloy at 100 K.
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页码:8207 / 8213
页数:7
相关论文
共 20 条
[1]  
Aeppli G., 1992, COMMENTS COND MAT PH, V16, P155
[2]   LONG PERIOD HELIMAGNETISM IN THE CUBIC-B20 FEXCO1-XSI AND COXMN1-XSI ALLOYS [J].
BEILLE, J ;
VOIRON, J ;
ROTH, M .
SOLID STATE COMMUNICATIONS, 1983, 47 (05) :399-402
[3]  
CHAIKIN PM, 1990, ORGANIC SUPERCONDUCTIVITY, P101
[4]  
Chasmar R.P., 1959, J ELECT CONTROL, V7, P52, DOI DOI 10.1080/00207215908937186
[5]   CE3BI4PT3 AND HYBRIDIZATION GAP PHYSICS [J].
FISK, Z ;
CANFIELD, PC ;
THOMPSON, JD ;
HUNDLEY, MF .
JOURNAL OF ALLOYS AND COMPOUNDS, 1992, 181 :369-375
[6]   MEASUREMENT OF THERMAL CONDUCTIVITY BY UTILIZATION OF THE PELTIER EFFECT [J].
HARMAN, TC ;
CAHN, JH ;
LOGAN, MJ .
JOURNAL OF APPLIED PHYSICS, 1959, 30 (09) :1351-1359
[7]  
Ioffe A. F., 1957, SEMICONDUCTOR THERMO
[8]   PARAMAGNETIC EXCITED STATE OF FESI [J].
JACCARINO, V ;
WERTHEIM, GK ;
WERNICK, JH ;
WALKER, LR ;
ARAJS, S .
PHYSICAL REVIEW, 1967, 160 (03) :476-+
[9]  
KRENTSIS RP, 1970, SOV PHYS SEMICOND+, V4, P339
[10]   FIGURE OF MERIT FOR THERMOELECTRICS [J].
MAHAN, GD .
JOURNAL OF APPLIED PHYSICS, 1989, 65 (04) :1578-1583