2010
DOI: 10.1109/tnano.2010.2060493
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Toward Cheap Disposable Sensing Devices for Biological Assays

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Cited by 30 publications
(13 citation statements)
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“…OFETs can be integrated with cells for sensing applications. Scarpa et al54 reported a P3HT‐based OFET for biological sensing. They found that living cells like fibroblast cells could grow on the surface of P3HT film after coating protein and oxygen plasma treatment.…”
Section: Sensors Based On Ofetsmentioning
confidence: 99%
“…OFETs can be integrated with cells for sensing applications. Scarpa et al54 reported a P3HT‐based OFET for biological sensing. They found that living cells like fibroblast cells could grow on the surface of P3HT film after coating protein and oxygen plasma treatment.…”
Section: Sensors Based On Ofetsmentioning
confidence: 99%
“…12,13 Low-cost, simple manufacture processing, and versatile geometry allow a straightforward integration of organic-based technology into lab-on-a-chip devices. In addition, the ability of organic semiconductors to operate in aqueous environment and their proved biocompatibility [14][15][16] make them the ideal interface between electronics and biological systems. 17 However, despite quick advancements of organic bioelectronics in recent years, only few examples have been described about interfacing conducting polymers with living systems.…”
Section: Apl Materials 3 014909 (2015)mentioning
confidence: 99%
“…rinted organic electronics has gained increasing consideration as a cost-effective alternative to silicon, especially in those applications where cheap or disposable devices are required [1]- [5]. In the roadmap of printed electronics, radio frequency identification (RFID) has an important place due to the huge available market still covered by bar codes.…”
Section: Introductionmentioning
confidence: 99%