烧结
材料科学
铜
陶瓷
热电效应
钴酸盐
电阻率和电导率
冶金
微观结构
塞贝克系数
热电材料
矿物学
分析化学(期刊)
热导率
复合材料
化学
热力学
电气工程
色谱法
物理
工程类
作者
А. I. Klyndyuk,Е. А. Чижова,R. Sh. Latypov,S. V. Shevchenko,V. M. Kononovich
标识
DOI:10.1134/s0036023622020073
摘要
Abstract Composite thermoelectric materials based on layered calcium cobaltite Ca 3 Co 4 O 9 + δ doped with copper particles were synthesized by two-step sintering, and their microstructure, and electrotransport and thermoelectric properties were studied. It was determined that the introduction of copper particles into the ceramics improves their sinterability at moderate sintering temperatures ( T sint ≤ 1273 K), leading to a decrease in the porosity of the samples and an increase in their electrical conductivity and power factor, whereas the oxidation of copper to less conductive copper(II) oxide significantly decreases the electrical conductivity and power factor of the ceramics sintered at elevated temperatures ( T sint ≥ 1373 K). The power factor is maximum for the Ca 3 Co 4 O 9 + δ + 3 wt % Cu ceramic sintered at 1273 K (335 μW/(m K 2 ) at a temperature of 1100 K), which is by a factor of 2.3 higher than the power factor of the base material Ca 3 Co 4 O 9 + δ with the same thermal history (145 μW/(m K 2 ) at 1100 K) and more than 3 times higher than the power factor of the Ca 3 Co 4 O 9+δ ceramic synthesized by the conventional solid-phase method.
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