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首页> 外文期刊>Composites Science and Technology >Fabrication and investigation of 3D tuned PEG/PEDOT: PSS treated conductive and durable cotton fabric for superior electrical conductivity and flexible electromagnetic interference shielding
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Fabrication and investigation of 3D tuned PEG/PEDOT: PSS treated conductive and durable cotton fabric for superior electrical conductivity and flexible electromagnetic interference shielding

机译:3D调谐PEG / PEDOT的制造和研究:经PSS处理的导电耐用棉织物,具有出色的导电性和灵活的电磁干扰屏蔽

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摘要

Promotions of conducting e-textiles are drawing attention for mitigating electromagnetic radiation pollution. Probably it is a huge challenge to gain long-term durable and stable fabric for all-weather outdoor application. In this work, a facile dip coating design has been adopted to fabricate PEG/PEDOT: PSS treated fabric. The high electrical conductivity of 51.0 S cm(-1) and EMI SE of 46.8 dB (in X-band) were achieved by only 20 dipping cycles (thickness similar to 0.38 mm), whereas the optimum conductivity and shielding were found to be 82.7 S cm(-1) and 65.6 dB at 25 dipping cycles. According to the AFM, XPS, SAXS and FTIR characterization, the enhancement in electrical conductivity was found to be the phase separation between PEDOT and PSS followed by the charge screening phenomena. The exclusive "void-filler" inclusion in the whole fabric also has been evaluated in order to correlate their microstructure (both 2D and 3D) along with the desirable conducting features. Remarkably, the conducting network remains flexible even after prolonged sunlight exposure, thermal air ageing, repeated bending with twisting, peeling with single sided tape, boiling with water, and different organic solvents which proves its versatile mechanical and chemical robustness. Such long term deformations exhibit above 95% retention of EMI SE which offers a promising approach to fabricate a futuristic e-textiles which can address long-term exposure towards the extreme environmental conditions (both wet and dry media).
机译:促进电子纺织品的推广正在引起人们的注意,以减轻电磁辐射污染。对于全天候户外应用而言,获得长期耐用且稳定的织物可能是一个巨大的挑战。在这项工作中,采用了一种简便的浸涂设计来制造PEG / PEDOT:PSS处理过的织物。仅通过20个浸入循环(厚度类似于0.38 mm)即可达到51.0 S cm(-1)的高电导率和46.8 dB(在X波段)的EMI SE,而最佳电导率和屏蔽度为82.7在25个浸入循环中达到S cm(-1)和65.6 dB。根据AFM,XPS,SAXS和FTIR的表征,发现电导率的提高是PEDOT和PSS之间的相分离,然后是电荷屏蔽现象。为了使它们的微结构(2D和3D)与所需的导电特性相关联,还对整个织物中唯一的“空隙填充剂”进行了评估。值得注意的是,即使长时间暴露在阳光下,热空气老化,扭曲反复弯曲,单面胶带剥离,水沸腾以及不同的有机溶剂之后,导电网络仍保持柔性,这证明了其广泛的机械和化学稳定性。这样的长期变形表现出超过95%的EMI SE保留率,这为制造可解决长期暴露于极端环境条件(湿介质和干介质)的未来派电子纺织提供了一种有前途的方法。

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