首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Solution-processable bipolar host materials composed of fluorenyl, carbazolyl and 1,3,4-oxadiazolyl derivatives: synthesis and application in phosphorescent organic light-emitting diodes
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Solution-processable bipolar host materials composed of fluorenyl, carbazolyl and 1,3,4-oxadiazolyl derivatives: synthesis and application in phosphorescent organic light-emitting diodes

机译:由芴基,咔唑基和1,3,4-恶二唑基衍生物组成的可溶液加工的双极性主体材料:合成及其在磷光有机发光二极管中的应用

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Carrier transport in a host is crucial for enhancing the emission efficiency of phosphorescent organic light-emitting diodes (PhOLEDs). The study prepared two new solution-processable bipolar hosts (FC3O and FC4O) containing fluorenyl, hole-transporting carbazolyl and electron-transporting oxadiazolyl moieties to investigate their applicability to PhOLEDs. The ratios of oxadiazolyl over carbazolyl groups are 3/1 and 4/2 for FC3O and FC4O, respectively. It was found that both hosts reveal good thermal stability (T-d > 360 degrees C, T-g > 145 degrees C) attributable to rigid and non-planar structures; moreover, homogeneous films (rms roughness <0.75 nm) were readily obtained by the spin-coating process. Multilayer green-emitting PhOLEDs were successfully fabricated (ITO/PEDOT: PSS/EML/BCP/LiF/Al), using FC3O or FC4O doped with Ir(ppy) 3 as the emission layer (EML) which was deposited by the spin-coating process. The maximum luminance and maximum current efficiency of the FC4O-based device were 10 232 cd m(-2) and 18.2 cd A(-1), respectively, higher than 9358 cd m(-2) and 14.9 cd A(-1) of the FC3O-based one. Furthermore, both FC3O and FC4O outperform the conventional host PVK (1567 cd m(-2), 4.0 cd A(-1)) in terms of device performance, indicating their potential for general applicability to hosts of organic light-emitting diodes.
机译:主体中的载流子传输对于提高磷光有机发光二极管(PhOLED)的发射效率至关重要。该研究制备了两种新的可溶液处理的双极性主体(FC3O和FC4O),它们包含芴基,空穴传输的咔唑基和电子传输的恶二唑基部分,以研究它们在PhOLED中的适用性。对于FC 3 O和FC 4 O,恶二唑基与咔唑基的比率分别为3/1和4/2。发现这两个主体都表现出良好的热稳定性(T-d> 360摄氏度,T-g> 145摄氏度),这归因于刚性和非平面结构。此外,通过旋涂工艺很容易获得均质膜(均方根粗糙度<0.75 nm)。使用掺杂有Ir(ppy)3的FC3O或FC4O作为发射层(EML),通过旋涂沉积成功地制造了多层绿色发射PhOLED(ITO / PEDOT:PSS / EML / BCP / LiF / Al)处理。基于FC4O的设备的最大亮度和最大电流效率分别为10232 cd m(-2)和18.2 cd A(-1),高于9358 cd m(-2)和14.9 cd A(-1)基于FC3O的一种。此外,就器件性能而言,FC3O和FC4O均优于传统的主机PVK(1567 cd m(-2),4.0 cd A(-1)),这表明它们具有普遍适用于有机发光二极管主机的潜力。

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