氧化锌与铁合金陶瓷的热电性能

Aliaksei V. Pashkevich, Ludmila A. Bliznyuk, A. Fedotov, V. Khovaylo, A. Kharchanka, V. Fedotova
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引用次数: 2

摘要

本文研究了氧化铁FeO和Fe2O3以1:9的比例加入对氧化锌ZnO陶瓷热电特性的影响。样品本身是基于在开放气氛中烧结粉末混合物的陶瓷技术分两阶段制备的。热导率研究指出了室温下晶格热导率的主要贡献。合金化导致导热系数的降低是由于引入ZnO晶格的点缺陷处声子散射的增加(由于铁离子取代锌离子)和晶界处声子散射的增加(由于微观结构的细化),以及孔隙率的增加(密度的降低)和额外的ZnFe2O4铁素体相颗粒的形成。与铁合金化以及伴随而来的陶瓷结构变化(晶粒尺寸减小、孔隙度增加、铁素体相析出)导致ZT的热电系数增加2倍(由于电阻率和导热系数降低,而热电系数下降相对较小)。所得结果可用于制备具有最佳热电特性的zno基陶瓷。
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Thermal and thermoelectric properties of ceramics based on zinc oxide alloyed with iron
In this work, we study the effect of adding iron oxides FeO and Fe2O3 in a ratio of 1 : 9 on the thermal and thermoelectric characteristics of ceramics based on zinc oxide ZnO. The samples themselves were made in two stages based on the ceramic technology of sintering powder mixtures in an open atmosphere. Thermal conductivity studies point to the dominant contribution of lattice thermal conductivity at room temperature. The decrease in thermal conductivity as a result of alloying is due to an increase in phonon scattering at point defects introduced into the ZnO lattice (due to the replacement of zinc ions by iron ions) and at grain boundaries (due to microstructure refinement), as well as an increase in porosity (a decrease in density) and the formation of particles of an additional ZnFe2O4 ferrite phase. Alloying wit iron and the accompanying change in the structure of ceramics (decrease in grain size, increase in porosity, precipitation of the ferrite phase) leads to an increase in the thermoelectric figure of merit ZT by 2 times (due to a decrease in electricalresistivity and thermal conductivity with a relatively small decrease in the thermoelectric coefficient). The results obtained can be used to fabricate ZnO-based ceramics with optimal thermoelectric characteristics.
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