2010
DOI: 10.1088/0022-3727/43/8/085101
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Laser-printed interdigitated Ag electrodes for organic thin film transistors

Abstract: Pentacene-based thin film transistors (TFTs) with top contact (TC) and bottom contact (BC) configurations were fabricated on glass substrates using laser-printed silver nanoinks as the bottom gate and source/drain electrodes with a cross-linked poly-4-vinylphenol dielectric layer. Nanostructured source/drain Ag electrodes with various channel lengths (10–100 µm) were successfully fabricated on the pentacene layer without any damage from the Ag nanoink solvents due to the use of a semi-dry laser transfer proces… Show more

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Cited by 30 publications
(13 citation statements)
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“…Fabrication of interdigitated electrodes requires patterning the photoresist using photolithography. It is also possible to adopt 3D printing techniques to form the pattern [34,46]. Microbatteries with this configuration consistently show much higher areal capacity than batteries with 2D electrodes.…”
Section: D Microbatteries and Flexible Microbatteriesmentioning
confidence: 99%
“…Fabrication of interdigitated electrodes requires patterning the photoresist using photolithography. It is also possible to adopt 3D printing techniques to form the pattern [34,46]. Microbatteries with this configuration consistently show much higher areal capacity than batteries with 2D electrodes.…”
Section: D Microbatteries and Flexible Microbatteriesmentioning
confidence: 99%
“…In the last decade, the LIFT process has been widely used for the fabrication of functional electronic devices, namely, OTFTs (31,(112)(113)(114), OLEDs (29,115), ultracapacitors (116), microbatteries (117,118), and solar cells (119). For example, high-quality gate and source-drain electrodes for OTFTs made from laser-printed silver nanoinks have been demonstrated (120). In this work, pentacene-TFT devices with bottom-contact (BC) and top-contact (TC) configurations were fabricated.…”
Section: Organic Thin-film Transistors Light-emitting Diodes and MImentioning
confidence: 99%
“…Although line printing through LIFT has proved to be feasible for conductive inks [24,25,26], these liquids have been precisely engineered for optimum line printing, having rheologies completely different from biomolecule solutions, which are mostly water based solutions.…”
Section: Introductionmentioning
confidence: 99%