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有机热电发电机的电化学合成

Electrochemical Synthesis of an Organic Thermoelectric Power Generator.

作者信息

Serrano-Claumarchirant José F, Brotons-Alcázar Isaac, Culebras Mario, Sanchis Maria J, Cantarero Andrés, Muñoz-Espí Rafael, Gómez Clara M

机构信息

Institute of Materials Science (ICMUV), Universitat de València, c/Catedràtic José Beltrán 2, 46980 Paterna, Spain.

Institute of Molecular Science (ICMol), Universitat de València, c/Catedràtic José Beltrán 2, 46980 Paterna, Spain.

出版信息

ACS Appl Mater Interfaces. 2020 Oct 14;12(41):46348-46356. doi: 10.1021/acsami.0c12076. Epub 2020 Oct 5.

Abstract

Energy harvesting through residual heat is considered one of the most promising ways to power wearable devices. In this work, thermoelectric textiles were prepared by coating the fabrics, first with multiple-wall carbon nanotubes (MWCNTs) by using the layer-by-layer technique and second with poly(3,4-ethylenedioxythiophene) (PEDOT) deposited by electrochemical polymerization. Sodium deoxycholate and poly(diallyldimethylammonium chloride) were used as stabilizers to prepare the aqueous dispersions of MWCNTs. The electrochemical deposition of PEDOT on the MWCNT-coated fabric was carried out in a three-electrode electrochemical cell. The polymerization of PEDOT on the fabric increased the electrical conductivity by ten orders of magnitude (through the plane), establishing an excellent path for electric transport across the fabrics. In addition, the fibers showed a Seebeck coefficient of 14.3 μV K, which is characteristic of highly doped PEDOT. As a proof of concept, several thermoelectric modules were made with different elements based on the coated acrylic and cotton fabrics. The best generator made of 30 thermoelectric elements using acrylic fabrics exhibited an output power of 0.9 μW with a temperature difference of 31 K.

摘要

通过余热收集能量被认为是为可穿戴设备供电最有前景的方式之一。在这项工作中,通过以下步骤制备热电织物:首先使用层层技术在织物上涂覆多壁碳纳米管(MWCNT),其次通过电化学聚合沉积聚(3,4-乙撑二氧噻吩)(PEDOT)。使用脱氧胆酸钠和聚二烯丙基二甲基氯化铵作为稳定剂来制备MWCNT的水分散体。PEDOT在MWCNT涂覆的织物上的电化学沉积在三电极电化学池中进行。PEDOT在织物上的聚合使电导率提高了十个数量级(沿平面方向),为电流在织物上传输建立了良好的通道。此外,这些纤维的塞贝克系数为14.3 μV K,这是高度掺杂PEDOT的特征。作为概念验证,基于涂覆的腈纶和棉织物制作了几个包含不同元件的热电模块。由30个热电元件制成的、使用腈纶织物的最佳发电机在31 K的温差下输出功率为0.9 μW。

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