2023
DOI: 10.1021/acsanm.3c01814
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Inkless Multimaterial Printing Flexible Electronics by Directed Laser Deposition at Nano- and Microscale

Zabihollah Ahmadi,
Aarsh Patel,
Adib Taba
et al.

Abstract: Additively manufactured electronics, also known as printed electronics, are becoming increasingly important for the anticipated Internet of Things (IoT). This requires manufacturing technologies that allow the integration of various pure functional materials and devices onto different flexible and rigid surfaces. However, the current ink-based technologies suffer from complex and expensive ink formulation, ink-associated contaminations (additives/solvents), and limited sources of printing materials. Thus, prin… Show more

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Cited by 2 publications
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“…To overcome the aforementioned challenges, this study utilized a dry additive nanomanufacturing (Dry-ANM) method to print conductive silver patterns on biodegradable paper for future papertronics. The ANM method was recently developed and demonstrated for inkless printing of clean materials on rigid and flexible substrates. In the current application of this technique, pure silver nanoparticles were created by the pulsed laser ablation of a solid silver target. These nanoparticles were then guided via a carrier gas out of the printer nozzle onto the substrates, where they were deposited and laser-sintered in real time to form the desired patterns without damaging the paper.…”
Section: Introductionmentioning
confidence: 99%
“…To overcome the aforementioned challenges, this study utilized a dry additive nanomanufacturing (Dry-ANM) method to print conductive silver patterns on biodegradable paper for future papertronics. The ANM method was recently developed and demonstrated for inkless printing of clean materials on rigid and flexible substrates. In the current application of this technique, pure silver nanoparticles were created by the pulsed laser ablation of a solid silver target. These nanoparticles were then guided via a carrier gas out of the printer nozzle onto the substrates, where they were deposited and laser-sintered in real time to form the desired patterns without damaging the paper.…”
Section: Introductionmentioning
confidence: 99%