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首页> 外文期刊>Journal of Electronic Materials >Preparation of Oxidation-Resistant Ag-Cu Alloy Nanoparticles by Polyol Method for Electronic Packaging
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Preparation of Oxidation-Resistant Ag-Cu Alloy Nanoparticles by Polyol Method for Electronic Packaging

机译:通过多元醇方法制备耐氧化脂合金纳米粒子的电子包装方法

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Ag or Cu metal nanoparticle paste can be used as a bonding material for electronic packaging applications. However, Ag nanoparticle paste has some drawbacks including high cost and being prone to ion migration in high-humidity conditions. The main obstacle to using Cu nanoparticle paste is rapid oxidation in air during heating. In this work, we describe a method to prepare Ag-Cu alloy nanoparticle paste by a polyol chemical reduction method combined with subsequent concentration. Characterization with ultraviolet-visible spectroscopy, transmission electron microscopy, x-ray photoelectron spectroscopy and energy dispersive spectrometry confirm the formation of the Ag-Cu alloy structure. During the synthesis of Ag-Cu alloy nanoparticles, an Ag core forms initially, followed by codeposition of Ag and Cu. Most of the Ag-Cu alloy nanoparticles have a truncated octahedral shape with twin structures located at the edges. This Ag-Cu alloy nanoparticle paste has a good oxidation resistance up to 350 degrees C in air atmosphere. Using the Ag-Cu alloy nanoparticle paste, joints were formed at a low sinter-bonding temperature of 160 degrees C. Shearing tests confirm the formation of robust joints, with an average shear strength of 50MPa.
机译:Ag或Cu金属纳米颗粒浆料可用作电子包装应用的粘合材料。然而,Ag纳米粒子糊剂具有一些缺点,包括高成本,并且在高湿度条件下容易出现离子迁移。使用Cu纳米颗粒糊的主要障碍在加热过程中在空气中快速氧化。在这项工作中,我们描述了一种制备Ag-Cu合金纳米颗粒糊的方法,通过多元醇化学还原方法与随后的浓度合并。用紫外线可见光谱表征,透射电子显微镜,X射线光电子能谱和能量分散光谱法确认了Ag-Cu合金结构的形成。在合成Ag-Cu合金纳米颗粒期间,最初是Ag核心形式,其次是Ag和Cu的负载沉积。大多数Ag-Cu合金纳米颗粒具有截短的八面体形状,其具有位于边缘处的双结构。该Ag-Cu合金纳米颗粒浆料在空气气氛中具有高达350℃的良好氧化性。使用Ag-Cu合金纳米颗粒糊剂,在160℃的低烧结温度下形成接头。剪切试验确认鲁棒关节的形成,平均剪切强度为50MPa。

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