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首页> 外文期刊>Journal of the Ceramic Society of Japan >Thermoelectric properties of Co-doped BiFeO3 and Bi24CoO37–BiFeO3 compound systems
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Thermoelectric properties of Co-doped BiFeO3 and Bi24CoO37–BiFeO3 compound systems

机译:共掺杂BiFeO3和Bi24CoO37–BiFeO3复合体系的热电性能

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We investigated the thermoelectric properties of doped multiferroic material: Co-doped BiFeO3 (BFO) and related materials: Bi24CoO37 and Bi24CoO37–BFO composite systems. Because of their insulating nature, the BFO-based samples showed high Seebeck coefficients compared with other oxides being explored as candidates for new thermoelectric materials such as NaCo2O4, and La0.9Sr0.99Ca0.11CoO4. On the other hand, the Bi24CoO37 sample showed high conductivity. The Bi24CoO37 (20%)–BFO composite sample showed a high power factor, because of its high conductivity and high Seebeck coefficient. These results indicated that the BFO matrix plays an important role in maintaining a high Seebeck coefficient, and that Bi24CoO37 works as a conductive pass on this system.
机译:我们研究了掺杂的多铁性材料:共掺杂的BiFeO 3 (BFO)和相关材料的热电性能:Bi 24 CoO 37 和Bi < sub> 24 CoO 37 -BFO复合系统。由于其绝缘性,与正在被探索作为新型热电材料(例如NaCo 2 O 4 和La)的候选氧化物的其他氧化物相比,基于BFO的样品表现出较高的塞贝克系数。 0.9 Sr 0.99 Ca 0.11 CoO 4 。另一方面,Bi 24 CoO 37 样品显示出高电导率。 Bi 24 CoO 37 (20%)– BFO复合样品由于具有高电导率和高塞贝克系数而显示出高功率因数。这些结果表明,BFO基质在维持高塞贝克系数方面起着重要作用,而Bi 24 CoO 37 在该系统上起着导电通路的作用。

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