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All Inkjet-Printed Graphene-Silver Composite Ink on Textiles for Highly Conductive Wearable Electronics Applications

机译:用于高导电性可穿戴电子设备的所有喷墨印刷的石墨烯-银复合油墨

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摘要

Inkjet-printed wearable electronic textiles (e-textiles) are considered to be very promising due to excellent processing and environmental benefits offered by digital fabrication technique. Inkjet-printing of conductive metallic inks such as silver (Ag) nanoparticles (NPs) are well-established and that of graphene-based inks is of great interest due to multi-functional properties of graphene. However, poor ink stability at higher graphene concentration and the cost associated with the higher Ag loading in metal inks have limited their wider use. Moreover, graphene-based e-textiles reported so far are mainly based on graphene derivatives such as graphene oxide (GO) or reduced graphene oxide (rGO), which suffers from poor electrical conductivity. Here we report inkjet printing of highly conductive and cost-effective graphene-Ag composite ink for wearable e-textiles applications. The composite inks were formulated, characterised and inkjet-printed onto PEL paper first and then sintered at 150 °C for 1 hr. The sheet resistance of the printed patterns is found to be in the range of ~0.08–4.74 Ω/sq depending on the number of print layers and the graphene-Ag ratio in the formulation. The optimised composite ink was then successfully printed onto surface pre-treated (by inkjet printing) cotton fabrics in order to produce all-inkjet-printed highly conductive and cost-effective electronic textiles.
机译:喷墨印刷的可穿戴电子纺织品(电子纺织)被认为是非常有前途的,因为数字制造技术可提供出色的加工和环境效益。导电金属油墨(例如银(Ag)纳米颗粒(NPs))的喷墨印刷已被广泛确立,由于石墨烯的多功能性,石墨烯基油墨的喷墨印刷引起了人们的极大兴趣。但是,在较高石墨烯浓度下较差的油墨稳定性以及与金属油墨中较高的Ag含量相关的成本限制了它们的广泛使用。此外,迄今为止报道的基于石墨烯的电子织物主要基于石墨烯衍生物,例如氧化石墨烯(GO)或还原氧化石墨烯(rGO),其导电性差。在这里,我们报告了可穿戴电子纺织品应用中具有高导电性和成本效益的石墨烯-Ag复合油墨的喷墨印刷。首先,对复合油墨进行配制,表征并喷墨打印到PEL纸上,然后在150°C的温度下烧结1°hr。发现印刷图案的薄层电阻在〜0.08–4.74Ω/ sq的范围内,具体取决于印刷层数和配方中的石墨烯-银比。然后,将经过优化的复合油墨成功地印刷到经过表面预处理(通过喷墨印刷)的棉织物上,从而生产出全喷墨印刷的高导电性和高性价比的电子纺织品。

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