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Water-based ultraviolet curable conductive inkjet ink containing silver nano-colloids for flexible electronics

机译:含银纳米胶体的水性紫外线可固化导电喷墨油墨,用于柔性电子

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摘要

In this study, we demonstrate a simple approach of fabricating conductive ultraviolet curable (UV) inkjet ink composed of silver nano-colloids and water-based UV resin. A type of stable silver nano-colloids with uniform size is prepared by oxidation-reduction reaction and polymer-coating process in a mixed aqueous solution of silver nitrate, glucose, triethylamine and poly (vinyl pyrrolidone). The results show that concentration of silver nitrate and glucose, the amount of glucose and the input rate of triethylamine have different effect on the shapes and sizes of the products. An environment friendly UV conductive inkjet ink is further produced by adding water-based UV resin and photo-initiator into nano-colloids. A conductive pattern can then be achieved by the following steps: ink-jet printing UV conductive ink on flexible polyimide substrate, evaporation of water on heating stage, curing under UV spot light source and sintering in muffle furnace. The effect of different silver content, thickness of conductive pattern and sintering temperature on the conductivity performance are investigated in detail. These novel composites studied here have a great potential application for flexible photonics and electronics.
机译:在这项研究中,我们演示了一种简单的方法来制造由银纳米胶体和水基UV树脂组成的导电紫外线可固化(UV)喷墨油墨。在硝酸银,葡萄糖,三乙胺和聚乙烯吡咯烷酮的混合水溶液中,通过氧化还原反应和聚合物包覆工艺制备了一种尺寸均匀的稳定的纳米银胶体。结果表明,硝酸银和葡萄糖的浓度,葡萄糖的量和三乙胺的输入速率对产物的形状和大小有不同的影响。通过将水基紫外线树脂和光引发剂添加到纳米胶体中,可以进一步生产出环保型紫外线导电喷墨油墨。然后可以通过以下步骤获得导电图案:在柔性聚酰亚胺基材上喷墨印刷UV导电油墨,在加热台上蒸发水,在UV点光源下固化以及在马弗炉中烧结。详细研究了不同银含量,导电图形厚度和烧结温度对导电性能的影响。本文研究的这些新型复合材料在柔性光子学和电子学中具有巨大的潜在应用。

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