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Fabrication of architectural structured polydopamine-functionalized reduced graphene oxide/carbon nanotube/PEDOT:PSS nanocomposites as flexible transparent electrodes for OLEDs

机译:建筑结构化聚多巴胺功能化的还原氧化石墨烯/碳纳米管/ PEDOT:PSS纳米复合材料的制备作为OLED的柔性透明电极

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摘要

High performance, flexible transparent conductive films with a structure similar to that of reinforced concrete and constructed by sandwiching single-walled carbon nanotubes (SWCNT) between poly (3,4-ethylene dioxythiophene):poly (styrene sulfonate) (PEDOT:PSS) and polydopamine functionalized reduced graphene oxide (PDA-RGO) were fabricated using simple spray coating. Mussel-inspired polydopamine was introduced as a graphene oxide reducing agent and modifier; the obtained PDA-RGO improved the interfacial adhesion between the conductive coating layers and substrate, and an effective post fabrication treatment method was performed on the hybrid film to achieve better conductivity. It was found that the resulting electrode exhibited a low sheet resistance of 52.2 Omega/sq. with a high optical transmittance of 88.7% at 550 nm. Moreover, the transparent film exhibited long-term stability with a relatively low roughness (ca. 2.41 nm), and its architectural structure sustained the flexibility of the film during bending. The organic light emitting diodes which using PDA-RGO/SWCNT/PEDOT:PSS film as anode was successfully fabricated, the luminance of the device was 2032 cd/cm(2) at 15 V and the maximum current efficiency was 2.13 cd/A at 14 V, indicating the strong potential of this type of transparent electrode for flexible electroluminescent devices.
机译:高性能,柔性的透明导电膜,具有类似于钢筋混凝土的结构,并且通过将单壁碳纳米管(SWCNT)夹在聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)和聚多巴胺官能化的还原氧化石墨烯(PDA-RGO)使用简单的喷涂工艺制备。引入以贻贝为灵感的聚多巴胺作为氧化石墨烯的还原剂和改性剂。所得的PDA-RGO改善了导电涂层与基材之间的界面附着力,并对杂化膜进行了有效的后加工处理方法,以实现更好的导电性。发现所得电极表现出52.2Ω/ sq的低薄层电阻。在550 nm处具有88.7%的高透光率。此外,透明膜表现出长期稳定性,具有相对较低的粗糙度(约2.41 nm),并且其建筑结构在弯曲过程中保持了膜的柔韧性。成功地制造了以PDA-RGO / SWCNT / PEDOT:PSS膜为阳极的有机发光二极管,该器件在15 V时的亮度为2032 cd / cm(2),最大电流效率为2.13 cd / A。 14 V,表明这种类型的透明电极的柔性电致发光器件的强大潜力。

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