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硅纳米线阵列用于热电发电的潜力。

Potentialities of silicon nanowire forests for thermoelectric generation.

作者信息

Dimaggio Elisabetta, Pennelli Giovanni

机构信息

Dipartimento di Ingegneria della Informazione, Università di Pisa, Via G.Caruso, I-56122, Pisa, Italy.

出版信息

Nanotechnology. 2018 Apr 3;29(13):135401. doi: 10.1088/1361-6528/aaa9a2.

DOI:10.1088/1361-6528/aaa9a2
PMID:29355836
Abstract

Silicon is a material with very good thermoelectric properties, with regard to Seebeck coefficient and electrical conductivity. Low thermal conductivities, and hence high thermal to electrical conversion efficiencies, can be achieved in nanostructures, which are smaller than the phonon mean free path but large enough to preserve the electrical conductivity. We demonstrate that it is possible to fabricate a leg of a thermoelectric generator based on large collections of long nanowires, placed perpendicularly to the two faces of a silicon wafer. The process exploits the metal assisted etching technique which is simple, low cost, and can be easily applied to large surfaces. Copper can be deposited by electrodeposition on both faces, so that contacts can be provided, on top of the nanowires. Thermal conductivity of silicon nanowire forests with more than 10 nanowires mm have been measured; the result is comparable with that achieved by several groups on devices based on few nanowires. On the basis of the measured parameters, numerical calculations of the efficiency of silicon-based thermoelectric generators are reported, and the potentialities of these devices for thermal to electrical energy conversion are shown. Criteria to improve the conversion efficiency are suggested and described.

摘要

就塞贝克系数和电导率而言,硅是一种具有非常良好热电性能的材料。在小于声子平均自由程但又足够大以保持电导率的纳米结构中,可以实现低导热率,从而实现高热电转换效率。我们证明,基于大量垂直于硅片两个面放置的长纳米线,可以制造出热电发电机的一个支路。该工艺采用金属辅助蚀刻技术,该技术简单、成本低,并且可以很容易地应用于大面积表面。可以通过电沉积在两个面上沉积铜,以便在纳米线顶部提供接触。已经测量了每平方毫米有超过10根纳米线的硅纳米线阵列的热导率;结果与几个研究小组在基于少量纳米线的器件上所取得的结果相当。基于测量参数,报告了硅基热电发电机效率的数值计算结果,并展示了这些器件在热电能量转换方面的潜力。提出并描述了提高转换效率的标准。

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Potentialities of silicon nanowire forests for thermoelectric generation.硅纳米线阵列用于热电发电的潜力。
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引用本文的文献

1
Silicon Nanowires: A Breakthrough for Thermoelectric Applications.硅纳米线:热电应用的一项突破。
Materials (Basel). 2021 Sep 14;14(18):5305. doi: 10.3390/ma14185305.
2
Imaging Thermoelectric Properties at the Nanoscale.纳米尺度成像热电特性。
Nanomaterials (Basel). 2021 May 1;11(5):1199. doi: 10.3390/nano11051199.
3
Giant Magnetoresistance and Magneto-Thermopower in 3D Interconnected NiFe/Cu Multilayered Nanowire Networks.三维互连镍铁/铜多层纳米线网络中的巨磁电阻和磁热功率
Nanomaterials (Basel). 2021 Apr 27;11(5):1133. doi: 10.3390/nano11051133.
4
Seebeck coefficient of silicon nanowire forests doped by thermal diffusion.通过热扩散掺杂的硅纳米线阵列的塞贝克系数
Beilstein J Nanotechnol. 2020 Nov 11;11:1707-1713. doi: 10.3762/bjnano.11.153. eCollection 2020.
5
High Power Thermoelectric Generator Based on Vertical Silicon Nanowires.基于垂直硅纳米线的高功率热电发电机
Nano Lett. 2020 Jul 8;20(7):4748-4753. doi: 10.1021/acs.nanolett.0c00227. Epub 2020 Jun 3.