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Enhanced performance of photonic crystal GaN light-emitting diodes with graphene transparent electrodes

机译:具有石墨烯透明电极的光子晶体GaN发光二极管的性能增强

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摘要

The two-dimensional (2D) triangle lattice air hole photonic crystal (PC) GaN-based light-emitting diodes (LED) with double-layer graphene transparent electrodes (DGTE) have been produced. The current spreading effect of the double-layer graphene (GR) on the surface of the PC structure of the LED has been researched. Specially, we found that the part of the graphene suspending over the air hole of the PC structure was of much higher conductivity, which reduced the average sheet resistance of the graphene transparent conducting electrode and improved the current spreading of the PC LED. Therefore, the work voltage of the DGTE-PC LED was obviously decreased, and the output power was greatly enhanced. The COMSOL software was used to simulate the current density distribution of the samples. The results show that the etching of PC structure results in the degradation of the current spreading and that the graphene transparent conducting electrode can offer an uniform current spreading in the DGTE-PC LED.>PACS: 85.60.Jb; 68.65.Pq; 42.70.Qs
机译:已经生产了具有双层石墨烯透明电极(DGTE)的二维(2D)三角晶格气孔光子晶体(PC)GaN基发光二极管(LED)。研究了双层石墨烯(GR)在LED PC结构表面上的电流扩散效应。特别地,我们发现悬浮在PC结构气孔上方的石墨烯部分具有更高的导电性,这降低了石墨烯透明导电电极的平均薄层电阻并改善了PC LED的电流分布。因此,DGTE-PC LED的工作电压明显降低,输出功率大大提高。 COMSOL软件用于模拟样品的电流密度分布。结果表明,对PC结构的蚀刻会导致电流扩展的降低,并且石墨烯透明导电电极可以在DGTE-PC LED中提供均匀的电流扩展。> PACS: 85.60.Jb; 68.65.Pq; 42.70问

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