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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of simultaneous K, and Yb substitution for Ca on the microstructural and thermoelectric characteristics of CaMnO3 ceramics
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Effect of simultaneous K, and Yb substitution for Ca on the microstructural and thermoelectric characteristics of CaMnO3 ceramics

机译:同时k和YB取代对CA的影响CAMNO3陶瓷的微观结构和热电特性

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摘要

CaMnO3-based materials are very attractive among n-type thermoelectric oxides for high-temperature applications when they are appropriately doped. The main drawback of these materials is the cost associated to the necessary rare earth cations. This work aims decreasing the amount of these materials through a partial substitution of Ca2+ by an equimolar mixture of K+ and Yb3+, Ca1-x(K0.5Yb0.5)(x)MnO3, with x = 0.05, 0.10, 0.15, and 0.20. XRD studies have confirmed that the thermoelectric phase is the major one in all samples. Microstructure has shown the formation of large crystals, and an increasing porosity when the substitution is raised. This evolution has been confirmed through density measurements. Electrical resistivity has been drastically decreased for the 0.10 substituted samples, compared with the 0.05 ones, slightly increasing for higher substitution. On the other hand, absolute Seebeck coefficient and thermal conductivity are lower when the substitution is raised. The best ZT values have been achieved for the 0.10 substituted samples, which are around the typical reported in the literature for higher doping level. These results clearly point out to a decrease of the necessary rare earth dopant content to achieve similar performances in CaMnO3 ceramics, which is of the main economic significance for their industrial production.
机译:当适当掺杂时,Camno3基材料在N型热电氧化物中非常有吸引力,用于高温应用。这些材料的主要缺点是与必要的稀土阳离子相关的成本。该工作旨在通过Ca2 +的Q +和Yb3 +,Ca1-x(K0.5yB0.5)(X)MnO 3的等摩尔混合物通过部分取代来降低这些材料的量,x = 0.05,0.10,0.15和0.20 。 XRD研究证实了热电相是所有样品中的主要阶段。微观结构示出了大晶体的形成,提高取代时的增加孔隙率。通过密度测量确认了这种进化。对于0.10个取代的样品,电阻率急剧下降,与0.05次取代相比,略高于替换。另一方面,当提高取代时,绝对塞贝克系数和导热率较低。对于0.10取代的样品,已经实现了最佳ZT值,这些样品周围围绕文献中的典型报告,以获得更高的掺杂水平。这些结果明确指出了必要的稀土掺杂剂含量的降低,以实现Camno3陶瓷中的类似性能,这对其工业生产具有主要的经济意义。

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