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Ink-jet-printed organic-inorganic hybrid dielectrics for organic thin-film transistors

机译:用于有机薄膜晶体管的喷墨印刷有机-无机混合电介质

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摘要

Using a thermally crosslinkable organosiloxane-based organic-inorganic hybrid material, we formulated a functional ink suitable for ink-jet printing of dielectric thin films. Ink solvent chemistry plays an important role in producing a uniform dielectric layer. In particular, the hydrodynamic motion of the solvents is controlled during the drying period. We used a higher-boiling-point solvent in order both to prevent a nozzle from clogging and to suppress convective flow. We also incorporated a lower-boiling-point solvent of high surface tension for diminishing the outward Marangoni flow. We successfully applied the printed hybrid dielectric layer with smooth surface morphology to the gate dielectric layer for organic thin-film transistors and analyzed the electrical performance of the transistor based on the ink-jet-printed dielectric layer, comparing with that of the transistor based on the spin-coated dielectric layer.
机译:我们使用可热交联的基于有机硅氧烷的有机-无机杂化材料,配制了适用于介电薄膜喷墨印刷的功能性油墨。油墨溶剂化学在产生均匀介电层中起着重要作用。特别地,在干燥期间控制溶剂的流体动力运动。为了防止喷嘴堵塞和抑制对流,我们使用了高沸点溶剂。我们还加入了高表面张力的低沸点溶剂,以减少向外的Marangoni流。我们成功地将具有光滑表面形态的印刷混合电介质层应用于有机薄膜晶体管的栅极电介质层,并分析了基于喷墨印刷电介质层的晶体管的电性能,并与基于电介质层的晶体管的电性能进行了比较。旋涂介电层。

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