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首页> 外文期刊>Electron Device Letters, IEEE >Bilayer Source/Drain Electrodes Self-Aligned With Fluoropolymer Dielectrics for Stable High-Performance Organic TFTs
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Bilayer Source/Drain Electrodes Self-Aligned With Fluoropolymer Dielectrics for Stable High-Performance Organic TFTs

机译:含氟聚合物电介质自对准双层源/漏电极,用于稳定的高性能有机TFT

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摘要

We propose a systematic fabrication method for stable high-performance organic thin-film transistors (TFTs) that are potentially compatible with high-density integrated circuits. Ag/PEDOT:PSS bilayers provide source/drain (S/D) electrodes with low sheet resistance and efficient hole injection capabilities, leading to high-performance bottom-contact pentacene TFTs with a saturation mobility of 0.19 $hbox{cm}^{2}/ hbox{V}cdothbox{s}$. Patterned dielectric layers based on a fluoropolymer Cytop function as a hydrophobic bank structure to define S/D electrodes in a self-aligned manner from Ag ink and a PEDOT:PSS solution while simultaneously improving the electrical stability of pentacene TFTs.
机译:我们为稳定的高性能有机薄膜晶体管(TFT)提出了一种系统化的制造方法,该晶体管有可能与高密度集成电路兼容。 Ag / PEDOT:PSS双层为源极/漏极(S / D)电极提供了低薄层电阻和有效的空穴注入能力,从而带来了具有0.19 $ hbox {cm} ^ {2的饱和迁移率的高性能底接触式并五苯TFT } / hbox {V} cdboxbox {s} $。基于含氟聚合物Cytop的图案化介电层起疏水堤岸结构的作用,以自对准方式从Ag墨水和PEDOT:PSS溶液中定义S / D电极,同时提高并五苯TFT的电稳定性。

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