首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A facile process to produce highly conductive poly(3,4-ethylenedioxythiophene) films for ITO-free flexible OLED devices
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A facile process to produce highly conductive poly(3,4-ethylenedioxythiophene) films for ITO-free flexible OLED devices

机译:轻松生产高导电性聚(3,4-乙撑二氧噻吩)薄膜的方法,用于无ITO柔性OLED器件

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摘要

A facile vapor phase polymerization (VPP) method is carried out to fabricate highly conductive poly(3,4-ethylenedioxythiophene) (PEDOT) flexible films with a low concentration FeCb ethanol solution as the oxidant, without high temperature, vacuum conditions and additives. Three kinds of PEDOT morphologies (square-like, flower-like and flat) can be observed on the surface of the films and the appearance of the square-like and flower-like structures does not affect the transparency of the films. A ca. 1500 S cm~(-1) film conductivity is achieved and after dipping in a H2SO4 solution, the conductivity significantly increases to ca. 2200 S cm~(-1) with a sheet resistance down to 50 Q HT1 and a transparency in the visible spectrum of >80% at 90 nm thickness. In addition, a simple ITO-free flexible OLED device was designed with a VPP-PEDOT film as the anode which was able to maintain a stable luminance after various kinds of bending and showed the feasibility of substituting PEDOT for the ITO layer in flexible OLED devices. The facile way offers an effective and convenient strategy to fabricate highly conductive PEDOT films and represents a significant step forward in the manufacture of flexible OLED devices and flexible displays in the rapidly growing organic electronics arena.
机译:进行了一种简便的气相聚合(VPP)方法,以低浓度的FeCb乙醇溶液为氧化剂,无需高温,真空条件和添加剂即可制备高导电性聚(3,4-乙撑二氧噻吩)(PEDOT)柔性薄膜。可以在薄膜表面上观察到三种PEDOT形态(正方形,花朵状和扁平状),正方形和花朵状结构的外观不会影响薄膜的透明度。大约达到1500 S cm〜(-1)的薄膜电导率,浸入H2SO4溶液中后,电导率显着增加至约。 2200 S cm〜(-1),薄层电阻低至50 Q HT1,在90 nm厚度下可见光谱中的透明度> 80%。此外,设计了一种简单的无ITO柔性OLED器件,该器件以VPP-PEDOT膜为阳极,能够在各种弯曲后保持稳定的亮度,并显示了在柔性OLED器件中用PEDOT代替ITO层的可行性。 。这种简便的方法为制造高导电性PEDOT膜提供了一种有效而便捷的策略,并且代表了在快速发展的有机电子领域中制造柔性OLED器件和柔性显示器的重要一步。

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