热电纳米线阵列特性的测量

J. Sharp, A. Thompson, L. Trahey, A. Stacy
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引用次数: 3

摘要

许多研究小组正在研究Bi/Sb和[Bi/Sb]2[Te/Se]3纳米线作为可能的高ZT材料。相对于相应的块体成分,纳米线可以提高电性能并降低导热性。纳米线性能的测量是困难的,需要考虑多种方法。我们正试图通过制造和测试微型电偶来推断纳米线阵列的热电输运特性。该对包含一个纳米线阵列腿和一个大块材料腿,我们测量了交流电阻、直流电压、∆T和塞贝克系数。越来越多的理论和实验工作表明,在纳米结构的低维材料中可能会发现更高的热电性能。许多这些研究都集中在超晶格上,这为精确的实验控制和相对简单的建模提供了机会。从…的观点来看
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of thermoelectric nanowire array properties
Numerous groups are studying nanowires of Bi/Sb and [Bi/Sb]2[Te/Se]3 as possible high ZT materials. Relative to the corresponding bulk compositions, it is feasible that nanowires will yield both improved electrical properties and reduced thermal conductivity. The measurement of nanowire properties is difficult and various approaches should be considered. We are attempting to infer the thermoelectric transport properties of nanowire arrays by making and testing miniature couples. The couples contain a nanowire array leg and a bulk material leg, and we measure AC resistance, DC voltage, ∆T and Seebeck coefficient. Motivation A growing body of theoretical and experimental work suggests that greater thermoelectric performance might be found in nanostructured, low-dimensional materials. [1] Many of these studies have focused on superlattices, which offer the opportunity for precise experimental control and relatively straightforward modeling. From the viewpoint of
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