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Enhancement of Thermopower of TAGS-85 High-Performance Thermoelectric Material by Doping with the Rare Earth Dy

机译:用稀土掺杂增强标签-85高性能热电材料的热电机

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摘要

Enhancement of thermopower is achieved by doping the narrow-band semiconductor Ag6.52Sb6.52Ge36.96Te50 (acronym TAGS-85), one of the best p -type thermoelectric materials, with 1 or 2% of the rare earth dysprosium (Dy). Evidence for the incorporation of Dy into the lattice is provided by X-ray diffraction and increased orientation-dependent local fields detected by 125Te NMR spectroscopy. Since Dy has a stable electronic configuration, the enhancement cannot be attributed to 4f -electron states formed near the Fermi level. It is likely that the enhancement is due to a small reduction in the carrier concentration, detected by 125Te NMR spectroscopy, but mostly due to energy filtering of the carriers by potential barriers formed in the lattice by Dy, which has large both atomic size and localized magnetic moment. The interplay between the thermopower, the electrical resistivity, and the thermal conductivity of TAGS-85 doped with Dy results in an enhancement of the power factor (PF) and the thermoelectric fi gure of merit (ZT) at 730 K, from PF= 28 μW cm−1 K−2 and ZT ≤ 1.3 in TAGS-85 to PF= 35 μW cm−1 K−2 and ZT ≥ 1.5 in TAGS-85 doped with 1 or 2% Dy for Ge. This makes TAGS-85 doped with Dy a promising material for thermoelectric power generation.
机译:通过掺杂窄带半导体AG6.52SB6.52GE36.96Te50(首字母键标签-85),最佳P型热电材料之一,具有1或2%的稀土化镝(Dy),实现了热电机的增强。通过125TE NMR光谱检测的X射线衍射和增加的取向依赖性局部,提供了掺入晶格中的证据。由于DY具有稳定的电子配置,因此增强不能归因于在FERMI水平附近形成的4F-Electron状态。增强可能是由于125te NMR光谱检测的载体浓度的小,但主要是由于载体通过Dy在晶格中形成的电位屏障的能量滤波,这具有大的既有原子尺寸和局部磁矩。掺杂掺杂Dy的标签-85的相互作用导致功率因数(PF)和730 k处的功率因数(PF)和热电体积的热电,从PF = 28 μWcm-1k-2和Zt≤1.3在标签-85中的标签-85至pf =35μwcm-1k-2和Zt≥1.5,掺杂有1或2%dy的标签-85中的标签-85。这使得标签-85掺杂有Dy具有热电发电的有希望的材料。

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