Flexible textile thermoelectric materials with CuI nanostructured films deposited on composites of nanocellulose and polyester fabric

N. Klochko, K. Klepikova, V. Kopach, E.M. Shepotko, M. Kirichenko, A. Khrypunova, V. Barbash, O. Yakymenko, O. Yashchenko, S. Petrushenko, S. Dukarov, V. Sukhov
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Abstract

In this work, nanocomposites of polyester fabric and biopolymer nanocellulose were developed as a textile backing for an efficient thermoelectric (TE) textile material with a nanostructured semiconductor film of copper iodide (CuI) 5 μm thick. Among the three methods for obtaining nanocellulose hydrogel from hemp organosolv pulp, thermochemical treatment with deep eutectic solvent turned out to be the best. This nanocellulose is composed of rod-shaped cellulose nanocrystals, which provide strength to the nanocomposite so that the TE textile sample does not crack. The CuI film in this thermoelectric textile has the best crystal structure, is non-stoichiometric, enriched in iodine, and has copper vacancies, which contributes to a large Seebeck coefficient and low resistivity, which ensures an increase in thermoelectric efficiency. The thermal image of the TE textile confirms the low thermal conductivity of the nanocomposite. Their maximum specific output power 15.6 $\mu \mathrm{W}/\text{cm}^{2}$ is one of the best among modern solid-state miniature, flexible and textile thermoelectric materials.
在纳米纤维素和聚酯织物复合材料上沉积具有CuI纳米结构薄膜的柔性纺织热电材料
在这项工作中,开发了聚酯织物和生物聚合物纳米纤维素的纳米复合材料,作为一种具有5 μm厚的碘化铜(CuI)纳米结构半导体膜的高效热电(TE)纺织材料的纺织衬底。从大麻有机溶剂纸浆中提取纳米纤维素水凝胶的三种方法中,采用深度共熔溶剂进行热化学处理的效果最好。这种纳米纤维素是由棒状的纤维素纳米晶体组成的,它为纳米复合材料提供了强度,使TE纺织品样品不会开裂。该热电织物中的CuI薄膜具有最佳的晶体结构,非化学计量,富含碘,并且具有铜空位,这使得塞贝克系数大,电阻率低,从而保证了热电效率的提高。TE纺织品的热成像证实了纳米复合材料的低导热性。其最大比输出功率为15.6 $\mu \ mathm {W}/\text{cm}^{2}$,在现代固态微型、柔性和纺织热电材料中名列前茅。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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