Issue 2, 2014

Fabrication of flexible copper-based electronics with high-resolution and high-conductivity on paper via inkjet printing

Abstract

Flexible and printable electronics are attractive techniques which have potential for broad applications not only in flexible but also in large area electronics. An effective and convenient method of fabricating high-resolution copper patterns with high conductivity and strong adhesion on flexible photopaper is demonstrated in this paper. Functional photopaper was prepared with inkjet printing of a palladium salt solution onto its surface, followed by electroless deposition of copper. Parameters of the printing process, such as voltage control waveform, temperature of printhead and substrate, meniscus vacuum level, printing height, etc. were optimized to obtain a robust and high resolution printing with feature dimensions down to 50 μm. Through a unique thermal sintering process, printed copper lines showed excellent conductivity of up to 3.9 × 107 S m−1 (>65% of bulk copper). The developed technique was successfully applied for fabricating paper based functional flexible circuits such as RFID antennae, micro-inductive coils and complex circuit boards.

Graphical abstract: Fabrication of flexible copper-based electronics with high-resolution and high-conductivity on paper via inkjet printing

Article information

Article type
Paper
Submitted
05 Sep 2013
Accepted
16 Oct 2013
First published
17 Oct 2013

J. Mater. Chem. C, 2014,2, 286-294

Fabrication of flexible copper-based electronics with high-resolution and high-conductivity on paper via inkjet printing

T. Zhang, X. Wang, T. Li, Q. Guo and J. Yang, J. Mater. Chem. C, 2014, 2, 286 DOI: 10.1039/C3TC31740D

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