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Preferential Orientation of Tetrahedral Silicon-BasedHosts in Phosphorescent Organic Light-Emitting Diodes

机译:四面体硅基的择优取向磷光有机发光二极管中的主体

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摘要

Vacuum-processed diphenylbis(3-(pyridine-2-yl)phenyl)silane (2PTPS), diphenylbis(3-(pyridine-3-yl)phenyl)silane (3PTPS), and diphenylbis(3-(pyridine-4-yl)phenyl)silane (4PTPS) have been used as electron-transporting host materials combined with tris(4-carbazoyl-9-ylphenyl)amine (TCTA) as the hole-transporting host, which induce balanced charge carrier transport for high-efficiency phosphorescent organic light-emitting diodes. The 4PTPS-based organic light-emitting diodes with tris[2-phenylpyridinato-C2,N]iridium(III) [Ir(ppy)3] dopant showed highest current efficiency and external quantum efficiency of 53.54 cd/A and 15.61%, compared to 2PTPS (40.75 cd/A, 11.84%) and 3PTPS (29.35 cd/A, 8.54%). These results were attributed to the well-aligned structure with preferential horizontal orientation of the emitting material layer by the diffraction intensity distribution as a function of azimuthal angle in two-dimensional grazing incidence X-ray diffraction analysis. The molecular orientation of TCTA:4PTPS material with a narrow azimuthal intensity distribution had better priority to the horizontal direction than the other TCTA:2PTPS and TCTA:3PTPS materials, which is related to the charge transport as well as the device efficiency.We found that the preferential horizontal orientation of the co-hostmaterial with a balanced charge carrier was not affected by Ir(ppy)3 dopant with a homoleptic structure and bis-[2-(4,6-difluorophenyl)pyridinato-N,C2](picolinato)iridium [Firpic]dopant with a heteroleptic structure in the co-host/dopant system.
机译:真空加工的二苯基双(3-(吡啶-2-基)苯基)硅烷(2PTPS),二苯基双(3-(吡啶-3-基)苯基)硅烷(3PTPS)和二苯基双(3-(吡啶-4-基)苯基)苯基)硅烷(4PTPS)已用作电子传输基质材料,与三(4-咔唑基-9-基苯基)胺(TCTA)组合作为空穴传输基质,可诱导平衡的载流子传输,从而实现高效磷光有机发光二极管。具有三[2-苯基吡啶并-C 2 ,N]铱(III)[Ir(ppy)3]掺杂剂的基于4PTPS的有机发光二极管显示出最高的电流效率和53.54的外部量子效率cd / A和15.61%,而2PTPS(40.75 cd / A,11.84%)和3PTPS(29.35 cd / A,8.54%)。这些结果归因于在二维掠入射X射线衍射分析中衍射强度分布作为方位角的函数,从而使发光材料层具有优先水平取向的良好排列的结构。与其他TCTA:2PTPS和TCTA:3PTPS材料相比,具有窄方位强度分布的TCTA:4PTPS材料的分子取向优先于水平方向,这与电荷传输和器件效率有关。我们发现共同主持人的优先水平取向具有平衡电荷载流子的材料不受具有均能结构的Ir(ppy)3掺杂剂和bis- [2-(4-(4-,6-二氟苯基)吡啶并)-N,C 2 ](picolinato)的影响铱[Firpic]在共宿主/掺杂剂系统中具有杂配结构的掺杂剂。

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