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The damaging effects of the acidity in PEDOT:PSS on semiconductor device performance and solutions based on non-acidic alternatives

机译:基于非酸性替代品的酸度酸度对酸度的破坏性作用:PSS对非酸性替代品的溶液

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摘要

Poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate), PEDOT:PSS, has been widely used as an effective hole transporting material in many different organic semiconductor devices for well over a decade. However, despite having many strong features which make this material such a popular hole transport/injection layer, PEDOT:PSS is well-known to cause degradation in devices and limit their stability due to the acidity of the PSS chain. This review focusses on the attempts that have been made to combat this problem, with different strategies explored, including the development of neutral analogues, use of alternative materials and the introduction of barrier layers to prevent degradation of the electrode. Since solution-processing is a key advantage of using PEDOT:PSS, we concentrate on analogous materials that can also be solution-processed, with particular attention on whether orthogonal processing can be retained. We intend this work to be a useful guide for researchers considering enhanced device lifetimes, an important parameter when considering organic semiconductor devices for commercialisation.
机译:聚(3,4-乙二氧基噻吩):聚(苯乙烯磺酸盐),PEDOT:PSS,已广泛用作许多不同的有机半导体器件中的有效孔输送材料,其多于十年。然而,尽管具有许多强大的特征使这种材料制造这种流行的空穴传输/注射层,所以众所周知:PSS是众所周知的,以引起装置中的降解,并且由于PSS链的酸度而限制它们的稳定性。本综述重点是对解决这一问题的尝试,探讨了不同的策略,包括开发中性类似物,使用替代材料以及引入阻挡层,以防止电极的降解。由于解决方案处理是使用PEDOT的关键优势:PSS,我们专注于类似的材料,这些材料也可以溶液处理,特别注意是否可以保留正交处理。我们打算这项工作是考虑增强设备寿命的研究人员的有用指南,这是考虑有机半导体器件进行商业化的重要参数。

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