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A top-emission organic light-emitting diode with a silicon anode and an Sm/Au cathode

机译:具有硅阳极和Sm / Au阴极的顶部发光有机发光二极管

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A top-emission organic light-emitting diode (TEOLED) with a p-type silicon anode and a semitransparent samarium/gold cathode has been constructed and studied. With a structure of Al/p-Si/SiOx/N,N-'-bis-(1-naphthl)-diphenyl-1,1'-biphenyl-4,4'-diamine(NPB)/Tris-(8-hydroxyquinoline)aluminum(Alq)/LiF/Al, we have found that compared to indium-tin-oxide, the p-Si anode enhances the unbalance between electron- and hole-injection, which is a disadvantage factor for the light-emitting efficiency of the TEOLED. Selecting p-Si wafers with suitable electric resistivities and inserting an ultrathin low temperature grown SiOx layer of about 1.5 nm between the anode and NPB can effectively restrict hole-injection. Moreover, a low work function Sm/Au cathode was used to enhance electron-injection. The electroluminescence efficiency of the TEOLED depends on the thickness of the Sm layer in the cathode. A current efficiency of 0.55 cd/A and a power efficiency of 0.07 lm/W have been reached. (C) 2004 American Institute of Physics.
机译:已构建并研究了具有p型硅阳极和半透明sa /金阴极的顶部发光有机发光二极管(TEOLED)。具有Al / p-Si / SiOx / N的结构,N -'-双-(1-萘基)-二苯基-1,1'-联苯-4,4'-二胺(NPB)/ Tris-(8-羟基喹啉铝(Alq)/ LiF / Al,我们发现与氧化铟锡相比,p-Si阳极增强了电子注入和空穴注入之间的不平衡,这是发光效率的不利因素TEOLED。选择具有合适电阻率的p-Si晶片并在阳极和NPB之间插入约1.5 nm的超薄低温生长SiOx层可以有效地限制空穴注入。此外,使用低功函数的Sm / Au阴极来增强电子注入。 TEOLED的电致发光效率取决于阴极中Sm层的厚度。电流效率为0.55 cd / A,功率效率为0.07 lm / W。 (C)2004美国物理研究所。

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