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Influence of nitrogenizing and Al-doping on microstructures and thermoelectric properties of iron disilicide materials

机译:氮化含量和掺杂对铁二氧化碳材料微观结构和热电性能的影响

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摘要

Aluminium doped iron disilicide based thermoelectric materials FeAl_xSi_2 (a- = 0.05, 0.10) were prepared by rapid solidification, nitrogenizing treatment and hot uniaxial pressing. beta-FeSi_2 phase with dispersed silicon have been obtained for all the hot-pressed samples after annealing at 1073 K for 20 h. The Seebeck coefficient a, electrical conductivity a and thermal conductivity k were measured from room temperature to 973 K. It was found that the Seebeck coefficients were markedly enhanced by the nitrogenizing treatment, but they decreased with increasing aluminium concentration x. The nitrogenizing treatment also significantly decreased the thermal conductivities of the Al-doped samples, especially for the sample with higher aluminium concentration. The maximum figure of merit of Z= 1.55 X 10 K at 743 K was obtained for FeAl0 05S1 without nitrogenizing. It is concluded that nitrogenizing treatment is promising to improve the thermoelectric properties for more heavily Al-doped FeSi_2.
机译:通过快速凝固,氮化处理和热的单轴压制制备基于掺杂的基金的热电材料FEAL_XSI_2(A- = 0.05,0.10)。在1073K以107 k下退火后,已经获得了具有分散硅的β-Fesi_2相对于所有热压样品获得20小时。从室温至973k测量塞贝克系数a,导电率a和导热率k。发现塞贝克系数通过氮化处理显着增强,但它们随着铝浓度x的增加而降低。氮化处理也显着降低了抗掺杂样品的热导体,特别是对于具有更高铝浓度的样品。对于FEAL0 05S1,获得了743 k的最大Z = 1.55×10k的优异的优点。没有氮化。得出结论,氮化处理是有前途的,以改善更重的Al掺杂Fesi_2的热电性能。

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