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用于闪光烧结中增强抗氧化性的混合铜-银导电轨迹。

Hybrid Copper-Silver Conductive Tracks for Enhanced Oxidation Resistance under Flash Light Sintering.

机构信息

Department of Mechanical and Manufacturing Engineering, University of Calgary , Calgary, Alberta T2N 1N4, Canada.

出版信息

ACS Appl Mater Interfaces. 2016 Aug 31;8(34):22369-73. doi: 10.1021/acsami.6b07826. Epub 2016 Aug 19.

Abstract

We developed a simple method to prepare hybrid copper-silver conductive tracks under flash light sintering. The developed metal nanoparticle-based ink is convenient because its preparation process is free of any tedious washing steps. The inks were composed of commercially available copper nanoparticles which were mixed with formic acid, silver nitrate, and diethylene glycol. The role of formic acid is to remove the native copper oxide layer on the surface of the copper nanoparticles. In this way, it facilitates the formation of a silver outer shell on the surface of the copper nanoparticles through a galvanic replacement. In the presence of formic acid, the copper nanoparticles formed copper formate, which was present in the unsintered tracks. However, under illumination by a xenon flash light, the copper formate was then converted to copper. Moreover, the resistance of the copper-only films increased by 6 orders of magnitude when oxidized at high temperatures (∼220 °C). However, addition of silver nitrate to the inks suppressed the oxidation of the hybrid copper-silver films, and the resistance changes in these inks at high temperatures were greatly reduced. In addition, the hybrid inks proved to be advantageous for use in electrical circuits as they demonstrated a stable electrical conductivity after exposure to ambient air at 180 °C.

摘要

我们开发了一种在闪光烧结下制备铜银混合导电轨道的简单方法。所开发的基于金属纳米粒子的油墨非常方便,因为其制备过程无需任何繁琐的洗涤步骤。这些油墨由市售的铜纳米粒子组成,铜纳米粒子与甲酸、硝酸银和二乙二醇混合。甲酸的作用是去除铜纳米粒子表面的天然氧化铜层。这样,通过电置换作用,在铜纳米粒子的表面形成银外壳。在存在甲酸的情况下,铜纳米粒子形成铜甲酸盐,其存在于未烧结的轨道中。然而,在氙闪光灯的照射下,铜甲酸盐随后被转化为铜。此外,当在高温(约 220°C)下氧化时,仅含铜的薄膜的电阻增加了 6 个数量级。然而,向油墨中添加硝酸银抑制了混合铜银薄膜的氧化,并且这些油墨在高温下的电阻变化大大降低。此外,混合油墨在暴露于 180°C 的环境空气中后表现出稳定的电导率,这证明了它们在电路中的应用具有优势。

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