Na位部分取代对层状氧化物Na/sub x/Co/sub 2/O/sub 4/热电性能的影响

T. Nagira, M. Ito, S. Katsuyama, Kazuhiko Majma, H. Nagai
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引用次数: 0

摘要

(Na/sub - 1-y/M/sub -y/)/sub - x/Co/sub - 2/O/sub - 4/ (M=K, Sr, y, Nd, Sm和Yb)的多晶样品;Y =0.01/spl sim/0.35),采用固相反应法制备。研究了Na位部分取代对Na/sub x/Co/sub 2/O/sub 4/在室温至1073 K范围内热电性能的影响。与未取代样品相比,sr取代样品的热电功率和电阻率增加,热导率的电子贡献减小。这些影响意味着载流子密度的降低。因此,对于sr取代样品,优值值略有提高。另一方面,对于稀土金属取代样品,观察到异常取代效应。也就是说,尽管电子对导热系数的贡献减小了,但热电功率减小了,电阻率增大了。对于除y取代外的所有取代样品,由于声子散射导致导热系数降低,晶格对导热系数的贡献减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Na-site partial substitutions on the thermoelectric properties of layered oxide Na/sub x/Co/sub 2/O/sub 4/
Polycrystalline samples of (Na/sub 1-y/M/sub y/)/sub x/Co/sub 2/O/sub 4/ (M=K Sr, Y, Nd, Sm and Yb; y=0.01/spl sim/0.35) were prepared by using a solid state reaction method. The effects of the Na-site partial substitutions on the thermoelectric properties of Na/sub x/Co/sub 2/O/sub 4/ from room temperature to 1073 K were investigated. For the Sr-substitution sample, the thermoelectric power and the resistivity increased, and the electronic contribution to the thermal conductivity decreased compared to the non-substitution sample. These effects mean the reduction of the carrier density. As a result of that, for the Sr-substitution sample, the figure of merit was slightly improved. On the other hand, for rare-earth-metal-substitution samples, the anomalous substitution effects were observed. That is, in spite of the fact that the electronic contribution to the thermal conductivity decreased, the thermoelectric power decreased and the electrical resistivity increased. For all substitution samples except for Y-substitution, the lattice contribution to the thermal conductivity decreased because of the phonon scattering resulting in the decrease in the thermal conductivity.
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