Publication | Closed Access
Vertical Organic Field-Effect Transistors for Integrated Optoelectronic Applications
76
Citations
29
References
2016
Year
Optimized Vofet StructureOrganic Charge-transfer CompoundElectrical EngineeringWhite OledEngineeringSemiconducting PolymerPhotodetectorsOrganic ElectronicsNanoelectronicsDirect IntegrationOptoelectronic MaterialsApplied PhysicsIntegrated Optoelectronic ApplicationsPore SizeOrganic SemiconductorMicroelectronicsOptoelectronics
Direct integration of a vertical organic field-effect transistor (VOFET) and an optoelectronic device offers a single stacked, low power optoelectronic VOFET with high aperture ratios. However, a functional optoelectronic VOFET could not be realized because of the difficulty in fabricating transparent source and gate electrodes. Here, we report a VOFET with an on/off ratio up to 10(5) as well as output current saturation by fabricating a transparent gate capacitor consisting of a perforated indium tin oxide (ITO) source electrode, HfO2 gate dielectric, and ITO gate electrode. Effects of the pore size and the pore depth within the porous ITO electrodes on the on/off characteristic of a VOFET are systematically explained in this work. By combining a phosphorescent organic light-emitting diode with an optimized VOFET structure, a vertical organic light-emitting transistor with a luminance on/off ratio of 10(4) can be fabricated.
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