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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Impact of Coinage Metal Insertion on the Thermoelectric Properties of GeTe Solid-State Solutions
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Impact of Coinage Metal Insertion on the Thermoelectric Properties of GeTe Solid-State Solutions

机译:COINAGE金属插入对Gete固态溶液热电性能的影响

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摘要

A comprehensive study on the thermoelectric effect of Ag substitution in GeTe solid solutions, a congenital base for highly efficient TAGS-m [(GeTe)m(AgSbTe2)100m] thermoelectric materials, was performed. First-principles calculations were carried out to probe the changes arising from doping on the electronic band structure of GeTe, which exhibits a rhombohedral (r) structure at temperatures lower than 700 K. Aliovalent Ag substitution in GeTe increases the hole concentration and decreases the thermoelectric figure of merit (zT) due to the reduction of the Seebeck coefficient, which is ascribed mainly to the lowering of the Fermi level together with the loss of band degeneracy. The band structure and effective mass calculations of these doped materials also point to a soaring contribution from several hole pockets in the valence band. First-principles calculations carried out with two other group 11 transition metals (Cu, Au) reveal that silver substitution has the lowest impact on the thermopower of r-GeTe. A mean zT of similar to 0.85 at 773 K is achieved for Ge1xAgxTe (x = 0.04) solid solutions. The study highlights the limits in doping just a coinage metal to GeTe and recapitulates the need for pair substitution to enhance the thermoelectric properties of GeTe-based solid-state solutions.
机译:综合研究Gete固溶体在Gete固溶体中的热电效应,进行了高效标签-M [(GetE)M(GetE)M(Agsbte2)100m]热电材料的先天性碱。进行第一原理计算以探测掺杂对凝固的电子带结构引起的变化,其在低于700k的温度下表现出菱形(R)结构。Gete中的AlioPalent Ag取代增加了空穴浓度并降低了热电由于塞贝克系数的减少,优异(ZT)的数字,这主要归因于将费米水平降低以及乐队退化的损失。这些掺杂材料的带结构和有效质量计算也指向价带中的几个孔口袋的飙升贡献。用另外两个第11组过渡金属(Cu,Au)进行的第一原理计算表明银取代对R-Gete的热电器产生最低的影响。对于GE1xagxte(X< = 0.04)固溶体,实现了在773k中的平均Zt。该研究突出了掺杂掺杂的限制,仅仅是一个铸造金属,并重新承认对替换的需要,以提高GetE的固态解决方案的热电性能。

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