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Simple and green fabrication process of nano silver conductive ink and the application in frequency selective surface

机译:纳米银导电墨的简单和绿色制造过程及频率选择性表面的应用

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摘要

A simple and green method for fabrication of nano silver conductive ink was developed for use in frequency selective surface (FSS). The hydrogen peroxide and ethyl cellulose were used as reducing agents and dispersants to synthesize silver nanoparticles (Ag NPs), and the ethyl cellulose was be used as binders of nano silver conductive ink eventually. The reaction byproducts of hydrogen peroxide are water and oxygen, the synthesized Ag NPs were be cleaned using purified water and alcohol without centrifugation and drying process. The conductive ink with 30 wt% silver content was formulated with the Ag NPs capped with ethyl cellulose, solvent and additive, the residual water and alcohol were be evaporated using vacuum distillation process. The prepared Ag NPs were characterized by SEM, XRD, TGA and FT-IR. The viscosity and surface tension of Ag NPs ink were tested, and the conductive ink was inkjet printed on Polyimide (PI) film to fabricate the FSS. The results showed the printed FSS had reflection resonances at 16.5 GHz and nulls deeper than the required -20 dB level, with depths of -32 dB.
机译:开发了一种简单而绿色的制造纳米银导电油墨的方法,用于频率选择性表面(FSS)。过氧化氢和乙基纤维素用作还原剂和分散剂合成银纳米颗粒(Ag NPS),并且最终将乙基纤维素用作纳米银导电墨水的粘合剂。过氧化氢的反应副产物是水和氧,使用纯净的水和醇清洁合成的Ag NP,而不进行离心和干燥过程。用乙基纤维素,溶剂和添加剂的Ag NP配制了具有30wt%银含量的导电油墨,使用真空蒸馏工艺蒸发残留的水和醇。制备的Ag NPS以SEM,XRD,TGA和FT-IR为特征。测试Ag NPS油墨的粘度和表面张力,并且导电油墨在聚酰亚胺(PI)膜上印有喷墨,以制造FSS。结果显示,印刷的FSS在16.5GHz的反射共振,并且零效率比所需的-20 dB水平更深,深度为-32 dB。

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