2011IEEE Transactions on Electron DevicesRequires access

Fully Deformable Organic Thin-Film Transistors With Moderate Operation Voltage

Piero Cosseddu, Andrea Piras, Annalisa Bonfiglio

Open publisher page 35 citations

Abstract

Highly flexible and mechanically stable organic thin-film transistors (OTFTs) have been fabricated using a very simple approach. Very thin parylene C films have been realized and employed as a freestanding gate dielectric for the realization of OTFTs. We demonstrate that this approach can be employed for scaling down the operating voltage in OTFTs and complementary inverters just by lowering the final free-standing film thickness. Moreover, it has also been demonstrated that the device electrical behavior is scarcely sensitive to mechanical deformation, opening the way for the realization of highly flexible foldable electronics.

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What this paper is about

Highly flexible and mechanically stable organic thin-film transistors (OTFTs) have been fabricated using a very simple approach. Very thin parylene C films have been realized and employed as a freestanding gate dielectric for the realization of OTFTs. We demonstrate that this approach can be employed for scaling down the operating voltage in OTFTs and complementary inverters just by lowering the final free-standing film thickness. Moreover, it has also been demonstrated that the device electrical behavior is scarcely sensitive to mechanical deformation, opening the way for the realization of highly flexible foldable electronics.

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Available abstract

Highly flexible and mechanically stable organic thin-film transistors (OTFTs) have been fabricated using a very simple approach. Very thin parylene C films have been realized and employed as a freestanding gate dielectric for the realization of OTFTs. We demonstrate that this approach can be employed for scaling down the operating voltage in OTFTs and complementary inverters just by lowering the final free-standing film thickness. Moreover, it has also been demonstrated that the device electrical behavior is scarcely sensitive to mechanical deformation, opening the way for the realization of highly flexible foldable electronics.

Key concepts: Thin-film transistor, Materials science, Parylene, Optoelectronics, Realization (probability), Transistor, Flexible electronics, Dielectric

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