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Foldable flexible electronics based on few-layer graphene coated on paper composites

机译:基于涂布纸复合材料的几层石墨烯的可折叠柔性电子器件

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摘要

In this work, we describe an eco-friendly and cost-efficient method for the production of highly dispersed few-layer graphene solution using karaya gum as bio-inspired exfoliating agent. The as synthesized graphene aqueous solution can be easily applied on paper sheet through dipor brush coating thanks to the binding properties of the gum and to the functional groups on the paper surface with the graphene sheets. The as-synthesized composites display high mechanical strength and high electrical conductivity for numerous downstream applications. Electronic circuits can be designed on such graphene-paper composites either by controlling the graphene deposit or by post-laser etching with high lateral resolution. The laser beam can also be used to create local graphitization or partial etching of the conductive line in order to generate conductive areas with different resistance. The designed smart graphene paper was experimentally tested in different electronic applications, such as lightweight conductive circuit, as well as flexible keyboard which can be directly linked to a computer, thus opening up a new route for the development of daily life connected objects. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们描述了一种生态友好且经济高效的方法,用于使用Karaya Gum作为生物启动的剥离剂的高度分散的几层石墨烯溶液。由于GUM的结合性能和用石墨烯片上的纸张表面上的官能团,可以通过荷胶涂层容易地施加作为合成的石墨烯水溶液。 AS合成的复合材料对于许多下游应用显示高机械强度和高电导率。通过控制石墨烯沉积物或通过具有高横向分辨率的激光蚀刻,可以在这种石墨烯复合材料上设计电子电路。激光束还可用于产生导电线的局部石墨化或部分蚀刻,以产生具有不同电阻的导电区域。设计的智能石墨烯纸在不同的电子应用中进行了实验测试,例如轻质导电电路,以及可以直接连接到计算机的柔性键盘,从而开启日常生活连接物体的新途径。 (c)2020 elestvier有限公司保留所有权利。

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