The synergistic effect of micron spherical and flaky silver-coated copper for conductive adhesives to achieve high electrical conductivity with low percolation threshold

材料科学 复合材料 导电体 电导率 电阻率和电导率 胶粘剂 渗流阈值 冶金 电气工程 工程类 物理化学 化学 图层(电子)
作者
Weiwei Zhang,Jiahao Liu,Luobin Zhang,Jianqiang Wang,Zheng Zhang,Jintao Wang,Hao Liu,Hongtao Chen,Mingyu Li
出处
期刊:International Journal of Adhesion and Adhesives [Elsevier]
卷期号:114: 102988-102988 被引量:15
标识
DOI:10.1016/j.ijadhadh.2021.102988
摘要

In the application of electronic products, it is critical for conductive adhesives to ensure high electrical conductivity and good adhesion reliability. In this study, isotropic conductive adhesives (ICAs) with high conductivity and low percolation threshold can be achieved by making full use of the synergistic effect of micron spherical and flaky silver-coated copper ([email protected]) conductive fillers. The flaky [email protected] powder prepared by electroless plating was chosen as the main conductive filler, and the spherical core-shell structure [email protected] powder was used as an auxiliary conductive filler to be dispersed in the flaky [email protected] particles, providing more possibilities for building a large number of conductive bridges. In this study, the [email protected] powder was synthesized to eliminate the disadvantages of Cu oxidation and Ag electrochemical migration, while making the ICAs low cost and favourable conductivity. Furthermore, the curing parameters were optimized for the matrix resin in corresponding experiments. The results showed that a combination of spherical and flaky [email protected] powders in ICAs could not only significantly reduce the percolation threshold and the bulk resistivity but also increase the shear strength compared with the single component. In particular, the bulk resistivity of the optimum sample was 1.95 × 10−3 Ω cm, and the shear strength was 22.69 MPa when the filler content was only 60 wt%. Hence, the ICAs filled with spherical and flaky [email protected] will pave the way for high-performance and low-cost ICAs in the electronics packaging industry.
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