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首页> 外文期刊>Journal of Electronic Materials >Thermoelectric, Structural, and Mechanical Properties of Spark-Plasma-Sintered Submicro- and Microstructured p-Type Bi_(0.5)Sb_(1.5)Te_(3)
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Thermoelectric, Structural, and Mechanical Properties of Spark-Plasma-Sintered Submicro- and Microstructured p-Type Bi_(0.5)Sb_(1.5)Te_(3)

机译:等离子烧结亚微米和微结构p型Bi_(0.5)Sb_(1.5)Te_(3)的热电,结构和力学性能

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摘要

In the last two decades, attention to alternative energy has grown dramatically. Thermoelectric energy conversion of heat from combustion systems and hot engines into electricity can be utilized for such purposes. Practical thermoelectric materials for such applications must exhibit both favorable thermoelectric and mechanical properties. Bi_(2)Te_(3)-based alloys are known to be the best thermoelectric materials near room temperature. The current manuscript is concerned with the mechanical and transport properties of bulk submicro- and microstructured p-type Bi_(0.5)Sb_(1.5)Te_(3) samples with carrier concentration of approx1 X 10~(19) cm~(-3) to 3 X 10~(19) cm~(-3). Among the investigated samples, the maximal ZT values of the microstructured Bi_(0.5)Sb_(1.5)Te_(3) were found to be higher (approx0.96) compared with the submicrostructured samples (approx0.81), due to the highly anisotropic nature of the investigated microstructured alloy. Nevertheless, microhardness values were found to increase with reduction of grain size (85 Hv to 145 Hv for the submicrostructured, compared with approx60 Hv for the microstructured samples).
机译:在过去的二十年中,对替代能源的关注急剧增加。来自燃烧系统和热引擎的热能的热电转换为电能可以用于这种目的。用于此类应用的实用热电材料必须同时具有良好的热电性能和机械性能。已知Bi(2)Te_(3)基合金是接近室温的最佳热电材料。当前的手稿涉及载流子浓度约为1 X 10〜(19)cm〜(-3)的块状亚微米和微结构p型Bi_(0.5)Sb_(1.5)Te_(3)样品的力学和传输性能。至3 X 10〜(19)cm〜(-3)在研究的样品中,由于高度各向异性,与亚微结构化样品(约0.81)相比,微结构化Bi_(0.5)Sb_(1.5)Te_(3)的最大ZT值更高(约0.96)。研究的微结构合金的性质。然而,发现显微硬度值随着晶粒尺寸的减小而增加(亚微结构样品的显微硬度为85 Hv至145 Hv,而微结构样品的显微硬度约为60 Hv)。

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