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Synthesis of citrate-capped copper nanoparticles: A low temperature sintering approach for the fabrication of oxidation stable flexible conductive film

机译:柠檬酸盐型铜纳米粒子的合成:氧化稳定柔性导电膜制备的低温烧结方法

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摘要

Printable flexible electronics are gaining attention day by day over the last few years due to the increasing demand for wearable electronics. Copper-based conductive inks are the most promising material for printing flexible electronics due to their high conductivity and cost-effectiveness. However, high-temperature sintering under reductive environment, rapid oxidation in the air and poor bending stability are the big constrains in the widespread utilization of copper inks. Herein we describe a facile method for fabrication of flexible conductive PET film under ambient air using as-synthesized citrate-capped copper nanoparticles. Sodium alginate paste (made in hydrazine) was used as a sintering aid to make the film conductive at low heating temperature. The citric acid capping protects the particles from oxidation while esterification with sodium alginate contribute to mechanical stability. The achieved resistivity of 74.4 +/- 9 x 10(-2) mu Omega m is way better than reported in literature considering ambient air sintering under 60 degrees C with improved adhesion, to the best of our knowledge. Persistent current flow even after 2500 bending cycles (not reported before) shows the exceptional mechanical stability of our film against bending, while the utilization of facial screen-printing fabrication technology made the process commercially viable and cost-effective.
机译:由于可穿戴电子产品的需求日益增加,可打印的柔性电子产品在过去几年中,在过去几年中越来越关注。由于其高导电性和成本效益,铜基导电油墨是印刷柔性电子产品最有希望的材料。然而,在还原环境下的高温烧结,空气中的快速氧化和弯曲稳定性差是铜油墨广泛利用中的大约束。在此,我们描述了一种用于在环境空气下制造柔性导电PET膜的容易方法,使用合成的柠檬酸覆盖铜纳米颗粒在环境空气下。使用藻酸钠糊(肼制成)作为烧结助剂,使膜导电在低加热温度下。柠檬酸覆盖物保护颗粒免受氧化,同时用藻酸钠酯化有助于机械稳定性。达到74.4 +/- 9×10(-2)Mu Omega M的电阻率比在文献中据考虑到60摄氏度下的环境空气烧结,以改善粘附,以提高粘附,我们的知识得到改善。持续电流流动即使在2500次弯曲周期(之前未报道)显示我们的胶片的卓越机械稳定性,而面部丝网印刷制造技术的利用使得商业上可行和成本效益的过程。

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