Publication | Open Access
High performance n-channel organic field-effect transistors and ring oscillators based on C60 fullerene films
253
Citations
25
References
2006
Year
Organic Charge-transfer CompoundElectrical EngineeringHot Wall EpitaxyEngineeringSemiconducting PolymerOrganic ElectronicsNanoelectronicsApplied PhysicsOrganic SemiconductorFullereneChemistryC60 FilmsGate DielectricMicroelectronicsCharge Carrier TransportC60 Fullerene FilmsSemiconductor Device
We report on organic n-channel field-effect transistors and circuits based on C60 films grown by hot wall epitaxy. Electron mobility is found to be dependent strongly on the substrate temperature during film growth and on the type of the gate dielectric employed. Top-contact transistors employing LiF∕Al electrodes and a polymer dielectric exhibit maximum electron mobility of 6cm2∕Vs. When the same films are employed in bottom-contact transistors, using SiO2 as gate dielectric, mobility is reduced to 0.2cm2∕Vs. By integrating several transistors we are able to fabricate high performance unipolar (n-channel) ring oscillators with stage delay of 2.3μs.
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