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Vacuum-processed polyethylene as a dielectric for low operating voltage organic field effect transistors
Authors:Yasin Kanbur  Mihai Irimia-Vladu  Eric D G?owacki  Gundula Voss  Melanie Baumgartner  Günther Schwabegger  Lucia Leonat  Mujeeb Ullah  Hizir Sarica  Sule Erten-Ela  Reinhard Schwödiauer  Helmut Sitter  Zuhal Küçükyavuz  Siegfried Bauer  Niyazi Serdar Sariciftci
Affiliation:1. Department of Polymer Science and Technology, Middle East Technical University, Balgat, Ankara, Turkey;2. Linz Institute for Organic Solar Cells (LIOS), Physical Chemistry, Johannes Kepler University, Linz, Austria;3. Department of Soft Matter Physics, Johannes Kepler University, Linz, Austria;4. Department of Bioorganic Chemistry, University of Bayreuth, D-95440, Bayreuth, Germany;5. Institute of Semiconductor and Solid State Physics, Johannes Kepler University, Linz, Austria;6. Politehnica University of Bucharest, Faculty of Applied Chemistry and Materials Science, Bucharest, Romania;7. Ege University, Solar Energy Institute, Bornova-Izmir, Turkey
Abstract:We report on the fabrication and performance of vacuum-processed organic field effect transistors utilizing evaporated low-density polyethylene (LD-PE) as a dielectric layer. With C60 as the organic semiconductor, we demonstrate low operating voltage transistors with field effect mobilities in excess of 4 cm2/Vs. Devices with pentacene showed a mobility of 0.16 cm2/Vs. Devices using tyrian Purple as semiconductor show low-voltage ambipolar operation with equal electron and hole mobilities of ~0.3 cm2/Vs. These devices demonstrate low hysteresis and operational stability over at least several months. Grazing-angle infrared spectroscopy of evaporated thin films shows that the structure of the polyethylene is similar to solution-cast films. We report also on the morphological and dielectric properties of these films. Our experiments demonstrate that polyethylene is a stable dielectric supporting both hole and electron channels.
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