首页> 外文期刊>Organic Electronics >Fine patterning of glycerol-doped PEDOT:PSS on hydrophobic PVP dielectric with ink jet for source and drain electrode of OTFTs
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Fine patterning of glycerol-doped PEDOT:PSS on hydrophobic PVP dielectric with ink jet for source and drain electrode of OTFTs

机译:在OTFT的源极和漏极上通过喷墨在疏水性PVP电介质上对甘油掺杂的PEDOT:PSS进行精细图案化

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摘要

This report describes the fabrication and the electrical characteristics of pentacene OTFTs that use the conducting PEDOT:PSS for the source and drain (S/D) electrodes. By adding a controlled amount (10-20wt.%) of glycerol the conductivity of the PEDOT:PSS ink enhanced to 450 S/cm, and the viscosity of the ink was reduced to <20 cps in order for it to be suitable for ink jet printing. In order to create a patterned PEDOT:PSS layer for the S/D electrode on a hydrophobic polyvinylphenol (PVP) gate dielectric, oxygen plasma was applied to control the surface energy of S/D electrode area on the PVP surface. In addition, by adding a leveling agent, the pattern of PEDOT:PSS droplet was improved enough to be spread up to the corners of S/D electrode area, producing channel length of 10 urn with a fine shape. Pentacene TFTs with the PEDOT:PSS S/D electrodes exhibited a similar performance to those with Au S/D electrodes in terms of the electrode resistance, corresponding to sum of the electrode series resistance and the contact resistance, being ~30 kΩ cm at V_G = -25 V and the field effect mobility being 0.13 cm~2/V s and the on/off current ratio being 5.6 × 10~6. However, the electrode resistance of the PEDOT:PSS needs to be further reduced for the short channels <20 μm.
机译:该报告介绍了使用导电PEDOT:PSS作为源极和漏极(S / D)电极的并五苯OTFT的制造和电气特性。通过添加受控量(10-20wt。%)的甘油,PEDOT:PSS油墨的电导率提高到450 S / cm,并且油墨的粘度降低到<20 cps,以使其适合于油墨喷射印刷。为了在疏水性聚乙烯基苯酚(PVP)栅极电介质上为S / D电极创建图案化的PEDOT:PSS层,施加氧等离子体以控制PVP表面上S / D电极面积的表面能。此外,通过添加流平剂,PEDOT:PSS液滴的图案得到了充分改善,可以扩展到S / D电极区域的角落,从而形成了10微米的通道,并具有良好的形状。具有PEDOT:PSS S / D电极的并五苯TFT在电极电阻方面表现出与具有Au Au S / D电极相似的性能,对应于电极串联电阻和接触电阻之和,在V_G时约为〜30kΩcm = -25 V,场效应迁移率为0.13 cm〜2 / V s,开/关电流比为5.6×10〜6。但是,对于<20μm的短通道,需要进一步降低PEDOT:PSS的电极电阻。

著录项

  • 来源
    《Organic Electronics》 |2010年第5期|p.854-859|共6页
  • 作者单位

    Media Device Lab, Dong-A University, 840, Hadan-dong, Saha-gu, Busan 604-714, Republic of Korea;

    Media Device Lab, Dong-A University, 840, Hadan-dong, Saha-gu, Busan 604-714, Republic of Korea;

    Department of Electronics Engineering, Dong-A University, 840, Hadan-dong, Saha-gu, Busan 604-714, Republic of Korea;

    Department of Textile Engineering, Dong-A University, 840, Hadan-dong, Saha-gu, Busan 604-714, Republic of Korea;

    Media Device Lab, Dong-A University, 840, Hadan-dong, Saha-gu, Busan 604-714, Republic of Korea Department of Electronics Engineering, Dong-A University, 840, Hadan-dong, Saha-gu, Busan 604-714, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    organic thin film transistor; ink jet printing; PEDOT/PSS; oxygen plasma; source drain electrodes; flexible displays;

    机译:有机薄膜晶体管喷墨印刷;PEDOT / PSS;氧等离子体源漏电极;柔性显示器;

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