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Novel Ge-Sb-Te thermoelectric materials: A demonstration for an efficient diffusion couple technique in expediently exploiting new thermoelectric materials

机译:新型GE-SB-TE热电材料:有利地利用新的热电材料的有效扩散耦合技术的演示

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摘要

An efficient diffusion couple technique is proposed for rapid screening of potential thermoelectric materials and it has been explored in a (GeTe)(m) (Sb2Te3)(n) pseudobinary system. In this study, a combinatorial sample library of GeTe-Sb2Te3 diffusion couple with rich compositions and structures was prepared by plasma activation sintering (PAS). The relationship among composition, structure and performance of the materials was revealed by analyzing the chemical composition, crystal structure and thermoelectric properties of the microdomains in the combinatorial sample library, so as to achieve the purpose for rapid identification of Ge-Sb-Te compounds with excellent thermoelectric properties. The scanning results of the Seebeck coefficient of the samples library show that the sample with potential high thermoelectric performance has a chemical composition near Ge33.1Sb13.7Te53.2. The bulk materials with compositions in the vicinity of Ge33.1Sb13.7Te53.2 were prepared by a conventional melting and PAS process. Among these bulk samples, the one with a nominal composition of Ge38Sb10.3Te51.7 achieves a maximum ZT value of 0.55 at 673 K, indicating that the constituent phases Ge0.75Sb0.154Te1 and Ge3.37Sb1.63Te6 observed in this sample could be potential candidates with excellent thermoelectric properties. These two ternary compounds should be investigated for further optimization. The results of this study provide a reference for the application of combinatorial metrology for screening and optimizing new thermoelectric materials.
机译:提出了一种有效的扩散耦合技术,用于快速筛选潜在的热电材料,并且已经在(GetE)(M)(SB2Te3)(N)伪系统中探讨。在该研究中,通过等离子体活化烧结(PAS)制备具有富含组合物和结构的GetE-Sb2Te3扩散耦合的组合样品文库。通过分析组合物样品库中微瘤的化学成分,晶体结构和热电性能,揭示了材料的构成,结构和性能之间的关系,以达到快速鉴定GE-SB-TE化合物的目的优异的热电性能。样品库的塞贝克系数的扫描结果表明,具有潜在高热电性能的样品具有GE33.1SB13.7Te53.2附近的化学组合物。通过常规熔化和PAS工艺制备GE33.1SB13.7Te53.2附近的组合物的散装材料。在这些批量样品中,具有标称组合物的GE38SB10.3Te51.7的那一种在673k处实现0.55的最大ZT值,表明在该样本中观察到的组分阶段GE0.75SB0.154Te1和GE3.37SB1.63Te6可以是具有优异的热电性能的潜在候选者。应该研究这两种三元化合物以进一步优化。该研究的结果为应用组合计量来筛选和优化新的热电材料提供了参考。

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