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Enhancing Thermoelectric Performance of n-Type Hot Deformed Bismuth-Telluride-Based Solid Solutions by Nonstoichiometry-Mediated Intrinsic Point Defects

机译:通过非体式介导的内在点缺陷增强N型热变形碲化铋的固体溶液的热电性能

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摘要

Bismuth-telluride-based solid solutions are the unique thermoelectric (TE) materials near room temperature. Various approaches have been applied to enhance the thermoelectric performance, and much progress has been made in their p-type materials. However, for the n-type counterparts, little breakthrough has been obtained. We herein report on, enhancing thermoelectric performance of n-type bismuth-telluride-based alloys by nonstoichiometry to mediate the point defects, combined with one-time hot deformation. The improved power factor of 3.3 X 10(-3) W m(-1) K-2 and reduced lattice thermal conductivity contribute to a high figure-of merit, zT, of 1.2 at 450 K for n-type Bi2Te2.3Se0.69 alloys with Se deficiency. The high zT is comparable to that of Bi2Te2.3Se0.7 hot deformed three times, which is a practically complicated process. The results demonstrate that nonstoichiometry can be an effective and simple strategy in mediating intrinsic point defects and enhancing the thermoelectric performance of bismuth-telluride-based alloys.
机译:铋 - 碲化物的固体溶液是室温附近独特的热电(TE)材料。已经应用了各种方法来提高热电性能,并且在其p型材料中取得了大量进展。但是,对于N型对应物,已经获得了很少的突破。我们在此报道中,通过非体式测定N型铋 - 碲化酰胺基合金的热电性能,以介导点缺陷,与一次性热变形结合。提高功率因数为3.3×10(-3)W m(-1)k-2,并降低的晶格导热率为N-Type Bi2Te2.3Se0的450k有贡献至1.2的高值Zt。 69种具有缺乏症的合金。高ZT与Bi2te2.3se0.7的热变形三次相当,这是几乎复杂的过程。结果表明,不可渗透学可以是介导内在点缺陷并提高碲化铋基合金的热电性能的有效和简单的策略。

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