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All-inkjet-printed flexible electronics fabrication on a polymer substrate by low-temperature high-resolution selective laser sintering of metal nanoparticles

Cited 661 time in Web of Science Cited 728 time in Scopus
Authors

Ko, Seung H.; Pan, Heng; Grigoropoulos, Costas P.; Luscombe, Christine K.; Frechet, Jean M. J.; Poulikakos, Dimos

Issue Date
2007-08
Publisher
Institute of Physics Publishing
Citation
Nanotechnology, Vol.18 No.34, p. 345202
Abstract
All-printed electronics is the key technology to ultra-low-cost, large-area electronics. As a critical step in this direction, we demonstrate that laser sintering of inkjet-printed metal nanoparticles enables low-temperature metal deposition as well as high-resolution patterning to overcome the resolution limitation of the current inkjet direct writing processes. To demonstrate this process combined with the implementation of air-stable carboxylate-functionalized polythiophenes, high-resolution organic transistors were fabricated in ambient pressure and room temperature without utilizing any photolithographic steps or requiring a vacuum deposition process. Local thermal control of the laser sintering process could minimize the heat-affected zone and the thermal damage to the substrate and further enhance the resolution of the process. This local nanoparticle deposition and energy coupling enable an environmentally friendly and cost-effective process as well as a low-temperature manufacturing sequence to realize large-area, flexible electronics on polymer substrates.
ISSN
0957-4484
URI
https://hdl.handle.net/10371/208455
DOI
https://doi.org/10.1088/0957-4484/18/34/345202
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  • College of Engineering
  • Department of Mechanical Engineering
Research Area Laser Assisted Patterning, Liquid Crystal Elastomer, Stretchable Electronics, 로보틱스, 스마트 제조, 열공학

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