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The direct-writing of low cost paper based flexible electrodes and touch pad devices using silver nano-ink and ZnO nanoparticles

机译:基于低成本纸的柔性电极和使用银纳米墨水和ZnO纳米粒子的直接写入触控装置

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摘要

We report a novel and simple approach for the synthesis of silver nanoparticles capped with inositol (Ag NPs/Ino) by the reduction of silver salt with ascorbic acid under basic conditions. UV-vis, TEM, FTIR and TGA techniques were used to characterize the Ag NPs/Ino to determine the size, shape and surface modification of the NPs. Stable silver nano-ink was prepared in aqueous solution containing 1% PVP (stabilizer) and glycerol (cosolvent) and was used for the direct-writing of a paper electrode with a roller ball-point pen for electrochemical applications. The solvent, stabilizing agents, concentration of NPs (10%), paper substrate, sintering temperature (40 degrees C) and sintering time (15 min) were optimized to obtain a uniform coating of Ag NPs on the paper substrate. Further, the synthesis and fabrication of ZnO NPs on a paper substrate was put forward to design a touch pad device based on the piezoelectric effect. The preparation of paper based devices suggests a direction for the development of a simple, low cost and compatible approach for the direct-writing of paper based flexible electrodes and electronics for future applications.
机译:我们通过在基本条件下通过抗坏血酸的抗坏血酸还原银盐来报告一种新颖的和简单的方法,用于合成用肌醇(Ag NPS / InO)用肌醇(Ag nps / ino)。 UV-VI,TEM,FTIR和TGA技术用于表征AG NPS / INO,以确定NPS的尺寸,形状和表面改性。在含有1%PVP(稳定剂)和甘油(共溶剂)的水溶液中制备稳定的银纳米油墨,并用用于电化学应用的辊圆笔的纸电极直接写入纸电极。优化溶剂,稳定剂,NPS(10%),纸基材,烧结温度(40℃)和烧结时间(15分钟),以在纸基材上获得均匀的Ag NP涂层。此外,提出了纸基板上的ZnO NP的合成和制造,以设计基于压电效应的触摸板装置。纸张基础的设备的制备表明了一种方向,用于开发简单,低成本和兼容方法,用于基于纸的柔性电极和电子产品的直接写入,以供未来的应用。

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  • 来源
    《RSC Advances》 |2019年第31期|共9页
  • 作者单位

    Guru Ghasidas Vishwavidyalaya Dept Chem Bilaspur CG India;

    Guru Ghasidas Vishwavidyalaya Dept Chem Bilaspur CG India;

    Pt Ravishankar Shukla Univ Sch Studies Chem Raipur 492010 CG India;

    Guru Ghasidas Vishwavidyalaya Dept Pure &

    Appl Phys Bilaspur CG India;

    South Dakota Sch Mines &

    Technol Nanosci &

    Nanoengn Program Rapid City SD 57701 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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