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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Dedoping-induced interfacial instability of poly(ethylene imine)s-treated PEDOT:PSS as a low-work-function electrode
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Dedoping-induced interfacial instability of poly(ethylene imine)s-treated PEDOT:PSS as a low-work-function electrode

机译:用于聚(乙烯亚胺)S处理的PEDOT的诱导诱导的界面不稳定性:PSS作为低功函数电极

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摘要

Transparent organic electrodes printed from high-conductivity PEDOT:PSS have become essential for upscaling all-carbon based, low-cost optoelectronic devices. In the printing process, low-work-function PEDOT:PSS electrodes (cathode) are achieved by coating an ultra-thin, non-conjugated polyelectrolyte that is rich in amine groups, such as poly(ethylene imine) (PEI) or its ethoxylated derivative (PEIE), onto PEDOT:PSS surfaces. Here, we mapped the physical and chemical processes that occur at the interface between thin PEIx (indicating either PEI or PEIE) and PEDOT:PSS during printing. We identify that there is a dedoping effect of PEDOT induced by the PEIx. Using infrared spectroscopy, we found that the amine-rich PEIx can form chemical bonds with the dopant, PSS. At lower PSS concentration, PEIx also shows an electron-transfer effect to the charged PEDOT chain. These interface reactions lock the surface morphology of PEDOT:PSS, preventing the redistribution of PSS, and reduce the work function. Subsequent exposure to oxygen during the device fabrication process, on the other hand, can result in redoping of the low-work-function PEDOT:PSS interface, causing problems for printing reproducible devices under ambient conditions.
机译:从高电导率PEDOT印刷的透明有机电极:PSS对全碳基,低成本的光电器件的升高变得必不可少。在印刷过程中,通过涂覆富含胺基的超薄,非共轭聚电解质,例如聚(乙烯亚胺)(PEI)或其乙氧基化物(PEI)或其乙氧基化物(PEI)或其乙氧基化的超薄非共轭聚电解质来实现PSS电极(阴极)。衍生物(PEIE),进入PEDOT:PSS表面。在这里,我们映射了在薄Peix(表示PEI或PEIE)和PEDOT期间的界面之间发生的物理和化学过程,在打印期间PSS。我们确定Peix诱导的佩特效果。使用红外光谱,我们发现富含胺的佩脂可以与掺杂剂,PSS形成化学键。在较低的PSS浓度下,PEIX还显示给带电置入式链的电子转移效果。这些界面反应锁定PEDOT的表面形态:PSS,防止PSS的再分配,降低功函数。另一方面,随后在器件制造过程中暴露于氧气,可以导致降低低功函数PEDOT:PSS接口,在环境条件下引起打印可再现设备的问题。

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  • 作者单位

    Jinan Univ Guangdong Prov Key Lab Opt Fiber Sensing &

    Commun Guangzhou Key Lab Vacuum Coating Technol &

    New En Siyuan Lab Dept Phys Guangzhou 510632 Peoples R China;

    Linkoping Univ Dept Phys Chem &

    Biol Biomol &

    Organ Elect SE-58183 Linkoping Sweden;

    Linkoping Univ Dept Phys Chem &

    Biol Mol Phys SE-58183 Linkoping Sweden;

    Linkoping Univ Dept Phys Chem &

    Biol Biomol &

    Organ Elect SE-58183 Linkoping Sweden;

    Linkoping Univ Dept Phys Chem &

    Biol Surface Phys &

    Chem SE-58183 Linkoping Sweden;

    Linkoping Univ Dept Phys Chem &

    Biol Complex Mat &

    Devices SE-58183 Linkoping Sweden;

    Jinan Univ Guangdong Prov Key Lab Opt Fiber Sensing &

    Commun Guangzhou Key Lab Vacuum Coating Technol &

    New En Siyuan Lab Dept Phys Guangzhou 510632 Peoples R China;

    Jinan Univ Guangdong Prov Key Lab Opt Fiber Sensing &

    Commun Guangzhou Key Lab Vacuum Coating Technol &

    New En Siyuan Lab Dept Phys Guangzhou 510632 Peoples R China;

    Linkoping Univ Dept Phys Chem &

    Biol Biomol &

    Organ Elect SE-58183 Linkoping Sweden;

    Linkoping Univ Dept Phys Chem &

    Biol Complex Mat &

    Devices SE-58183 Linkoping Sweden;

    Linkoping Univ Dept Phys Chem &

    Biol Biomol &

    Organ Elect SE-58183 Linkoping Sweden;

    Linkoping Univ Dept Phys Chem &

    Biol Mol Phys SE-58183 Linkoping Sweden;

    Linkoping Univ Dept Phys Chem &

    Biol Biomol &

    Organ Elect SE-58183 Linkoping Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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