Importance of the Functional Group Density of a Polymeric Gate Insulator for Organic Thin-Film-Transistors
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概要
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We describe the importance of the functional group density of polymeric insulators (PI) for organic thin-film-transistors (OTFTs) in terms of the insulator processing temperature and the exposure of a linearly polarized ultraviolet (LPUV) light. The PI layers processed at lower temperatures than the boiling temperature ($T_{\text{b}}$) of the solvent have higher densities of functional groups than those processed above $T_{\text{b}}$. The carrier mobility in the pentacene OTFT processed below $T_{\text{b}}$ increases at least by a factor of three with maintaining other electrical properties such as the threshold voltage and the current on/off ratio. Our results suggest that the preferential alignment of the pentacene molecules is not the main physical mechanism for the mobility enhancement. From the mobility anisotropy resulting from the polarization of the LPUV, the packing density of the pentacene molecules on the PI layer, dictated primarily by the density of functional groups, is found to play a critical role on the magnitude of the mobility.
- Published by the Japan Society of Applied Physics through the Institute of Pure and Applied Physicsの論文
- 2007-01-15
著者
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Lee Sin-doo
School Of Electric Engineering #32 Seoul National University
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Kim Won-ho
School Of Electrical Engineering #32 Seoul National University
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Bae Jin-hyuk
School Of Electrical Engineering #32 Seoul National University
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Kim Jinyool
School Of Electrical Engineering #32 Seoul National University
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Kim Jinyool
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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