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Printing the Ultra-Long Ag Nanowires Inks onto the Flexible Textile Substrate for Stretchable Electronics

机译:将超长银纳米线油墨印刷到可拉伸电子产品的柔性纺织基板上

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摘要

Printing technology offers a simple and cost-effective opportunity to develop all-printed stretchable circuits and electronic devices, possibly providing ubiquitous, low-cost, and flexible devices. To successfully prepare high-aspect-ratio Ag nanowires (NWs), we used water and anhydrous ethanol as the solvent and polyvinylpyrrolidone (PVP) as the viscosity regulator to obtain a water-soluble Ag NWs conductive ink with good printability. Flexible and stretchable fabric electrodes were directly fabricated through screen printing. After curing at room temperature, the sheet resistance of the Ag NW fabric electrode was 1.5 Ω/sq. Under a tensile strain of 0–80% and with 20% strains applied for 200 cycles, good conductivity was maintained, which was attributed to the inherent flexibility of the Ag NWs and the intrinsic structure of the interlocked texture.
机译:印刷技术为开发全印刷可拉伸电路和电子设备提供了简单且具有成本效益的机会,可能提供了无处不在,低成本和灵活的设备。为了成功制备高纵横比的Ag纳米线,我们以水和无水乙醇为溶剂,以聚乙烯吡咯烷酮(PVP)为粘度调节剂,得到了具有良好印刷适性的水溶性Ag NWs导电油墨。柔性和可拉伸的织物电极是通过丝网印刷直接制造的。在室温下固化后,Ag NW织物电极的薄层电阻为1.5Ω/ sq。在0–80%的拉伸应变下,施加20%的应变200个循环,可以保持良好的导电性,这归因于Ag NW的固有柔韧性和互锁织构的固有结构。

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