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实验证据表明,Bi 纳米线阵列的 Seebeck 系数具有尺寸依赖性的符号变化。

Experimental evidence of a size-dependent sign change of the Seebeck coefficient of Bi nanowire arrays.

机构信息

Materials Research Department, GSI Helmholtzzentrum für Schwerionenforschung, 64291, Darmstadt, Germany.

Department of Materials and Earth Sciences, Technische Universität Darmstadt, 64287, Darmstadt, Germany.

出版信息

Sci Rep. 2023 May 22;13(1):8290. doi: 10.1038/s41598-023-35065-z.

Abstract

The electrical transport in bismuth nanowires is strongly influenced by both sample geometry and crystallinity. Compared to bulk bismuth, the electrical transport in nanowires is dominated by size effects and influenced by surface states, which gain increasing relevance with increasing surface-to-volume ratios, i.e. with decreasing wire diameter. Bismuth nanowires with tailored diameter and crystallinity constitute, therefore, excellent model systems, allowing to study the interplay of the different transport phenomena. Here, we present temperature-dependent Seebeck coefficient and relative electrical resistance measurements of parallel bismuth nanowire arrays with diameters between 40 and 400 nm synthesized by pulsed electroplating in polymer templates. Both electrical resistance and Seebeck coefficient exhibit a non-monotonic temperature dependence, with the sign of the Seebeck coefficient changing from negative to positive with decreasing temperature. The observed behavior is size-dependent and is attributed to limitations of the mean free path of the charge carriers within the nanowires. The observed size-dependent Seebeck coefficient and in particular the size-dependent sign change opens a promising avenue for single-material thermocouples with p- and n-legs made from nanowires with different diameters.

摘要

铋纳米线的输运性质强烈地受到样品几何形状和结晶度的影响。与体铋相比,纳米线中的输运性质主要受尺寸效应的影响,并受到表面态的影响,随着表面与体积比的增加(即直径的减小),表面态的影响变得越来越重要。因此,具有特定直径和结晶度的铋纳米线构成了优异的模型体系,允许研究不同输运现象的相互作用。在这里,我们展示了通过在聚合物模板中进行脉冲电镀合成的直径在 40nm 到 400nm 之间的平行铋纳米线阵列的温度相关的塞贝克系数和相对电阻测量。电电阻和塞贝克系数都表现出非单调的温度依赖性,随着温度的降低,塞贝克系数的符号从负变为正。观察到的行为是尺寸依赖性的,并归因于纳米线中载流子的平均自由程的限制。观察到的尺寸依赖性塞贝克系数,特别是尺寸依赖性符号变化,为使用不同直径的纳米线制成的 p 型和 n 型腿的单材料热电偶开辟了一条有前途的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0023/10203367/a87ad64ed6b8/41598_2023_35065_Fig1_HTML.jpg

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