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Thermoelectric properties of Ca2CoO3-deltaCoO2(1,62) as a function of Co/Ca defects and Co3O4 inclusions

机译:Ca2CoO3-deltaCoO2(1,62) 的热电性质与 Co/Ca 缺陷和 Co3O4 夹杂物的函数关系

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摘要

The misfit-layered cobalt oxide Ca2-wCoO3-deltaCoO2(1.62) is a promising material for high-temperature thermoelectric heat recovery. Here, we show that discrepancies in the numerously reported thermoelectric performances can result from Co3O4 impurities or a change of the defects, i.e., the relative Co content in the Ca2-wCoO3-deltaCoO2(1.62) phase. We observe that increasing the relative Co content in the Ca2-wCoO3-deltaCoO2(1.62) phase leads to a larger figure of merit ZT. We attribute this increase of ZT to additional p-type charge carriers introduced by Ca vacancies and the resulting reduction of the electrical resistivity. For Co/Ca ratios above the miscibility limit, the increase in thermal conductivity due to the formation of Co3O4 impurities leads to a reduction of ZT when the volume fraction of the Co3O4 phase is increased from 1 to 3. Hence, the best figure of merit is expected close to the upper phase boundary of the Ca2-wCoO3-deltaCoO2(1.62) phase. Published by AIP Publishing.
机译:错配层状氧化钴[Ca2-wCoO3-δ][CoO2](1.62)是一种很有前途的高温热电热回收材料。在这里,我们表明,大量报告的热电性能的差异可能是由 Co3O4 杂质或缺陷的变化引起的,即 [Ca2-wCoO3-delta][CoO2](1.62) 相中的相对 Co 含量。我们观察到,增加[Ca2-wCoO3-δ][CoO2](1.62)相的相对Co含量会导致更大的品质因数ZT。我们将ZT的增加归因于Ca空位引入的额外p型电荷载流子以及由此导致的电阻率的降低。对于高于混溶限值的Co/Ca比值,当Co3O4相的体积分数从1%增加到3%时,由于Co3O4杂质的形成而导致导热系数的增加导致ZT的降低。因此,最佳品质因数预计接近[Ca2-wCoO3-δ][CoO2](1.62)相的上层相边界。由AIP Publishing出版。

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