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首页> 外文期刊>Journal of Electronic Materials >Thermoelectric Properties of Layer-Antiferromagnet CuCrS2
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Thermoelectric Properties of Layer-Antiferromagnet CuCrS2

机译:层-反铁磁体CuCrS 2 的热电性能

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摘要

We have performed a detailed study of the electrical and thermal conductivities and thermoelectric power behavior of an antiferromagnetic-layer compound of chromium, CuCrS2, from 15 K to 300 K. Unlike previous studies, we find noninsulating properties and sensitive dependence on the preparation method, the microstructure, and the flaky texture formed in polycrystalline samples after extended sintering at high temperatures. Flakes are found to be metallic, with strong localization effects in the conductivity on cooling to low temperatures. The antiferromagnetic transition temperature T N (=40 K) remains essentially unaffected. The Seebeck coefficient is found to be in the range of 150 μV/K to 450 μV/K, which is exceptionally large, and becomes temperature independent at high temperatures, even for specimens with low resistivity values of 5 mΩ cm to 200 mΩ cm. We find the thermal conductivity κ to be low, viz. 5 mW/K cm to 30 mW/K cm. This can be attributed mostly to the dominance of lattice conduction over electronic conduction. The value of κ is further reduced by disorder in Cu occupancy in the quenched phase. We also observe an unusually strong dip in κ at T N, which is probably due to strong magnetocrystalline coupling in these compounds. Finally we discuss the properties of CuCrS2 as a heavily doped Kondo-like insulator in its paramagnetic phase. The combination of the electronic properties observed in CuCrS2 makes it a potential candidate for various thermoelectric applications.
机译:我们已经对铬的反铁磁层化合物CuCrS 2 的电导率和导热率以及热电性能进行了详细的研究,其范围为15 K至300K。与以前的研究不同,我们发现非绝缘性能并且对制备方法,微观结构和高温扩展烧结后在多晶样品中形成的片状质地的敏感依赖性。发现薄片是金属的,在冷却至低温时对导电性具有强烈的局部影响。反铁磁转变温度T N (= 40 K)基本上不受影响。发现塞贝克系数在150μV/ K至450μV/ K的范围内,这非常大,即使对于5mΩcm至200mΩcm的低电阻率样品,其在高温下也与温度无关。我们发现导热系数κ低,即。 5 mW / K厘米至30 mW / K厘米。这可以主要归因于晶格传导相对于电子传导的优势。淬火相中Cu的占有率无序,使得κ值进一步降低。我们还观察到在T N 处κ异常强的下降,这可能归因于这些化合物中强的磁晶耦合。最后,我们讨论了CuCrS 2 作为顺磁性相中重掺杂的近藤状绝缘子的性质。 CuCrS 2 中观察到的电子性质的组合使其成为各种热电应用的潜在候选者。

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