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Metallic Nanoparticle Inks for 3D Printing of Electronics
Journal article   Peer reviewed

Metallic Nanoparticle Inks for 3D Printing of Electronics

Hong Wei Tan, Jia An, Chee Kai Chua and Tuan Tran
Advanced electronic materials, Vol.5(5), pp.1-n/a
05/2019

Abstract

3D printed electronics 3D printing additive manufacturing material compositions metallic nanoparticle ink
The three‐dimensional (3D) printed electronics additive manufacturing industry sector has grown substantially in the past few years, and there is increasing demand for different types of metallic nanoparticle inks in electronics printing for various applications. Metallic nanoparticle inks are commonly used for fabricating conductive tracks and patterns due to their relatively high electrical conductivity as compared to other types of inks, and they can be further categorized into single‐element metallic nanoparticle inks, alloy metallic nanoparticle inks, metallic oxide nanoparticle inks, and core–shell bimetallic nanoparticle (BNP) inks. It is critical to gain a deep understanding of the metallic nanoparticle inks used in 3D printed electronics as the material properties of these inks can directly affect the final electrical and mechanical properties of the printed patterns. This review presents an overview of the available metallic nanoparticle inks used for 3D printing of electronics, and critically reviews the strengths and weaknesses of each type of ink. Finally, the challenges of metallic nanoparticle inks in 3D printed electronics are also discussed along with the future outlook for 3D printed electronics. Existing research efforts that utilize different types of metallic nanoparticle inks for 3D printing of electronics in various applications are summarized. Particular attention is given to helping researchers who are exploring the use of metallic nanoparticle inks for research in 3D printing of electronics to make an informed selection of inks in their research.

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