Chemical Communications · 2014 · 178 citations · 24 references
Materials ScienceCopper FormateChemical EngineeringConducting PolymerEngineeringFlexible ElectronicsNanomaterialsNatural SciencesPolymer ScienceNanomanufacturingPrinted ElectronicsConductive Copper PatternsMetal ComplexChemistryElectronic Packaging3D Printing
Highly conductive copper patterns on low-cost flexible substrates are obtained by inkjet printing a metal complex based ink. Upon heating the ink, the soluble complex, which is composed of copper formate and 2-amino-2-methyl-1-propanol, decomposes under nitrogen at 140 °C and is converted to pure metallic copper. The decomposition process of the complex is investigated and a suggested mechanism is presented. The ink is stable in air for prolonged periods, with no sedimentation or oxidation problems, which are usually encountered in copper nanoparticle based inks.
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Jolke Perelaer, Patrick J. Smith, Dario Mager et al. · Journal of Materials Chemistry · 2010 · 731 citations · Full text
Materials Science, Electrical Engineering, Chemical Engineering +15
Metal-based Inkjet Inks for Printed Electronics
Alexander Kamyshny · The Open Applied Physics Journal · 2011 · 410 citations · Full text