Structural, Thermoelectric, and Magnetic Properties of Pure and Ti-Doped Ca3Co4O9 Ceramic Compounds

C. Boyraz
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Abstract

The effect of the Ti element on the incommensurately layered thermoelectric oxide material Ca3Co4O9 is investigated. In this study, the structural, morphological, thermoelectric, and magnetic properties of Ca3(Co3.7Ti0.3)O9 composition is compared to the pristine Ca3Co4O9. In the Ti-doped sample, no significant enhancement of the Seebeck coefficient compared to Ca3Co4O9 is observed. The magnetic properties of both the pristine and Ti-doped Ca3Co4O9 are detailed. In M-H measurements, the effect of Ti in low temperatures reveals a magnetic phase transition due to two sublattices exhibiting wavy behavior. For each sample, magnetic inhomogeneity in the long-range ferromagnetic ordering which is clear almost before 19 K is observed by means of FC and ZFC curves. The findings on the physical properties of both samples are discussed in light of the previously published results.
纯和掺钛Ca3Co4O9陶瓷化合物的结构、热电和磁性能
研究了Ti元素对非相称层状热电氧化材料Ca3Co4O9的影响。在本研究中,将Ca3(Co3.7Ti0.3)O9的结构、形态、热电和磁性能与原始Ca3Co4O9进行了比较。在ti掺杂样品中,与Ca3Co4O9相比,塞贝克系数没有明显增强。详细分析了原始和掺钛Ca3Co4O9的磁性能。在M-H测量中,Ti在低温下的影响揭示了由于两个亚晶格表现出波浪行为而产生的磁相变。通过FC和ZFC曲线观察到,对于每个样品,在19 K之前,其铁磁长程有序的磁性不均匀性是明显的。根据先前发表的结果讨论了两种样品的物理性质的发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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