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通过干湿法纺丝制备用于导电纺织品的PET/石墨烯纳米复合纤维。

PET/Graphene Nanocomposite Fibers Obtained by Dry-Jet Wet-Spinning for Conductive Textiles.

作者信息

León-Boigues Laia, Flores Araceli, Gómez-Fatou Marian A, Vega Juan F, Ellis Gary J, Salavagione Horacio J

机构信息

Instituto de Ciencia y Tecnología de Polímeros (ICTP), CSIC, Departamento de Física de Polímeros, Elastómeros y Aplicaciones Energéticas, Juan de la Cierva 3, 28006 Madrid, Spain.

Instituto de Estructura de la Materia (IEM), CSIC, Departamento de Física Macromolecular, BIOPHYM, Serrano 113bis, 28006 Madrid, Spain.

出版信息

Polymers (Basel). 2023 Feb 28;15(5):1245. doi: 10.3390/polym15051245.

Abstract

The combination of polyethylene terephthalate (PET), one of the most used polymers in the textile industry, with graphene, one of the most outstanding conductive materials in recent years, represents a promising strategy for the preparation of conductive textiles. This study focuses on the preparation of mechanically stable and conductive polymer textiles and describes the preparation of PET/graphene fibers by the dry-jet wet-spinning method from nanocomposite solutions in trifluoroacetic acid. Nanoindentation results show that the addition of a small amount of graphene (2 wt.%) to the glassy PET fibers produces a significant modulus and hardness enhancement (≈10%) that can be partly attributed to the intrinsic mechanical properties of graphene but also to the promotion of crystallinity. Higher graphene loadings up to 5 wt.% are found to produce additional mechanical improvements up to ≈20% that can be merely attributed to the superior properties of the filler. Moreover, the nanocomposite fibers display an electrical conductivity percolation threshold over 2 wt.% approaching ≈0.2 S/cm for the largest graphene loading. Finally, bending tests on the nanocomposite fibers show that the good electrical conductivity can be preserved under cyclic mechanical loading.

摘要

聚对苯二甲酸乙二酯(PET)是纺织工业中使用最广泛的聚合物之一,与近年来最杰出的导电材料之一石墨烯相结合,是制备导电纺织品的一种很有前景的策略。本研究聚焦于制备机械性能稳定的导电聚合物纺织品,并描述了通过干喷湿纺法从三氟乙酸中的纳米复合溶液制备PET/石墨烯纤维的过程。纳米压痕结果表明,向玻璃态PET纤维中添加少量石墨烯(2 wt.%)会使模量和硬度显著提高(约10%),这部分可归因于石墨烯的固有机械性能,也可归因于结晶度的提高。发现高达5 wt.%的更高石墨烯负载量会使机械性能进一步提高约20%,这仅可归因于填料的优异性能。此外,纳米复合纤维的电导率渗流阈值超过2 wt.%,对于最大的石墨烯负载量接近约0.2 S/cm。最后,对纳米复合纤维的弯曲测试表明,在循环机械载荷下仍可保持良好的导电性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3e9/10007137/759cb96df06f/polymers-15-01245-g001.jpg

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