Publication | Closed Access
Controlling Electric Dipoles in Nanodielectrics and Its Applications for Enabling Air-Stable n-Channel Organic Transistors
73
Citations
24
References
2011
Year
EngineeringOrganic ElectronicsChemistryCharge TransportNanoelectronicsSam DipolesCharge Carrier TransportDipole LayersElectrical EngineeringPhysicsNanotechnologyOrganic SemiconductorMicroelectronicsOrganic MaterialsOrganic Charge-transfer CompoundSemiconducting PolymerChannel Charge DensityNatural SciencesElectric DipolesApplied Physics
We present a new method to manipulate the channel charge density of field-effect transistors using dipole-generating self-assembled monolayers (SAMs) with different anchor groups. Our approach maintains an ideal interface between the dipole layers and the semiconductor while changing the built-in electric potential by 0.41-0.50 V. This potential difference can be used to change effectively the electrical properties of nanoelectronic devices. We further demonstrate the application of the SAM dipoles to enable air-stable operation of n-channel organic transistors.
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