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Stabilizer residue in inks found to inhibit conductivity in 3D printed electronic


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IMAGE: (left) Digital inkjet printing of inks containing metal nanoparticles with in-situ solvent evaporation (pinning). (right) Optical and chemical images of a printed layer of silver nanoparticles showing organic residues at.
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Credit: Gustavo Trindade
Inks containing metal nanoparticles are among the most commonly-used conductive materials for printed electronics. Ink-jetting layers of MNP materials allows for unpreceded design flexibility, rapid processing and 3D printing of functional electronic devices such as sensors, solar panels, LED displays, transistors and smart textiles.
Inkjet 3D printing of metals typically form a solid printed object via a two-step process: solvent evaporation upon printing (pinning) and subsequent low-temperature consolidation of nanoparticles (sintering). The low temperature is important as in many applications the nanoparticles are co-printed with other functional/structural organic materials that ....

United Kingdom , Gustavo Trindade , Nottingham Trent University , Cfam Research Fellow Dr Gustavo Trindade , Programme Grant , University Of Nottingham , Communications Materials , Centre For Additive Manufacturing Cf , Fellow Dr Gustavo Trindade , Additive Manufacturing , Enabling Next Generation Additive , Emma Lowry Media Relations Manager , Sir Jesse Boot , ஒன்றுபட்டது கிஂக்டம் , குஸ்டாவோ டிரிண்டேட் , நாட்டிங்ஹாம் ட்ரெண்ட் பல்கலைக்கழகம் , ப்ரோக்ராம் மானியம் , பல்கலைக்கழகம் ஆஃப் நாட்டிங்ஹாம் , தகவல்தொடர்புகள் பொருட்கள் , ஐயா ஜெஸ்ஸி துவக்க ,