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PEDOT:PSS for Flexible and Stretchable Electronics: Modifications, Strategies, and Applications

机译:PEDOT:灵活且可伸缩电子产品的PSS:修改,策略和应用

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Substantial effort has been devoted to both scientific and technological developments of wearable, flexible, semitransparent, and sensing electronics (e.g., organic/perovskite photovoltaics, organic thin‐film transistors, and medical sensors) in the past decade. The key to realizing those functionalities is essentially the fabrication of conductive electrodes with desirable mechanical properties. Conductive polymers (CPs) of poly(3,4‐ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) have emerged to be the most promising flexible electrode materials over rigid metallic oxides and play a critical role in these unprecedented devices as transparent electrodes, hole transport layers, interconnectors, electroactive layers, or motion‐sensing conductors. Here, the current status of research on PEDOT:PSS is summarized including various approaches to boosting the electrical conductivity and mechanical compliance and stability, directly linked to the underlying mechanism of the performance enhancements. Along with the basic principles, the most cutting edge‐progresses in devices with PEDOT:PSS are highlighted. Meanwhile, the advantages and plausible problems of the CPs and as‐fabricated devices are pointed out. Finally, new perspectives are given for CP modifications and device fabrications. This work stresses the importance of developing CP films and reveals their critical role in the evolution of these next‐generation devices featuring wearable, deformable, printable, ultrathin, and see‐through characteristics.
机译:过去十年来,致力于穿戴,灵活,半透明和传感电子(例如有机/钙钛矿光伏,有机薄膜晶体管和医疗传感器)的科学和技术开发。实现这些功能的关键基本上是具有所需机械性能的导电电极的制造。聚(苯乙烯磺酸盐)的导电聚合物(CPS):聚(苯乙烯磺酸盐)(PEDOT:PSS)是在刚性金属氧化物上最有前途的柔性电极材料,并在这些前所未有的装置中发挥关键作用作为透明电极,空穴传输层,互连器,电活性层或运动传感导体。在这里,总结了PSS的当前研究现状:PSS包括促进导电性和机械顺应性和稳定性的各种方法,直接与性能增强的潜在机制相关联。随着基本原理,具有PEDOT:PSS的设备中最切削的边缘 - 突出显示。同时,指出了CPS和制造设备的优点和合理的问题。最后,给出了CP修改和设备制造的新视角。这项工作强调了开发CP薄膜的重要性,并揭示了它们在这些下一代装置的演变中的关键作用,具有可穿戴,可变形,可印刷,超薄和透视特性。

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