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Laser direct-printing for inter-connectivity and manufacturing of organic electronic components

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Alloncle, Anne Patricia
Ailuno, Julie
Rapp, Ludovic
Delaporte, Philippe

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This paper presents a Pulsed-Laser Printing process applied to silver nanoparticles ink with different viscosity properties with the goal to print conductive lines on various substrates. The Laser-Induced Forward Transfer (LIFT) technique has been used as a spatially-resolved laser deposition method. All materials have been transferred from a donor substrate onto a receiver substrate upon laser pulses in the picosecond regime. The efficiency of the LIFT confirms the significant potential of a laser direct-printing technique in the development of plastic microelectronics.

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International Symposium on High Power Laser Ablation 2012

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