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Geometry Control of Source/Drain Electrodes in Organic Field-Effect Transistors by Electrohydrodynamic Inkjet Printing

机译:电流动力喷墨印刷有机场效应晶体管源/漏电极的几何控制

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摘要

In this work we study the influence of dielectric surface and process parameters on the geometry and electrical properties of silver electrodes obtained by electrohydrodynamic inkjet printing. The cross-section and thickness of printed silver tracks are optimized to achieve a high conductivity. Silver overprints with cross-section larger than 4 μm2 and thickness larger than 90 nm exhibit the lowest resistivity. To fabricate electrodes in the desired geometry, a sufficient volume of ink is distributed on the surface by applying appropriate voltage amplitude. Single and multilayer overprints are incorporated as bottom contacts in bottom gate organic field-effect transistors (OFETs) with a semiconducting polymer as active layer. The multilayer electrodes result in significantly higher electrical parameters than single layer contacts, confirming the importance of a careful design of the printed tracks for reliable device performance. The results provide important design guidelines for precise fabrication of electrodes in electronic devices by electrohydrodynamic inkjet printing.
机译:在这项工作中,我们研究介电表面和工艺参数对通过电学剧喷墨印刷获得的银电极的几何和电性能的影响。印刷银轨道的横截面和厚度被优化以实现高导电性。横截面大于4μm2和​​大于90nm的横截面表现出最低电阻率。为了在所需的几何形状中制造电极,通过施加适当的电压幅度,在表面上分布了足够体积的墨水。单个和多层叠印掺入作为底部栅极有机场效应晶体管(OFET)的底部触点,其具有半导体聚合物作为活性层。多层电极导致比单层触点更高的电参数,确认仔细设计印刷轨道以获得可靠的设备性能。结果提供了通过电液动力喷墨印刷的精确制造电极精确制造的重要设计指南。

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