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A self-assembled Ag nanoparticle agglomeration process on graphene for enhanced light output in GaN-based LEDs

机译:石墨烯上的自组装Ag纳米粒子附聚过程,可增强GaN基LED中的光输出

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摘要

We introduce Ag nanoparticles fabricated by a self-assembled agglomeration process in order to enhance the electrical properties, adhesive strength, and reliability of the graphene spreading layer in inorganic-based optoelectronic devices. Here, we fabricated InGaN/GaN multi-quantum-well (MQW) blue LEDs having various current spreading layers: graphene only, graphene with Ag nanoparticles covering the surface, and graphene with Ag nanoparticles only in selectively patterned micro-circles. Although the Ag nanoparticles were found to act as an additional current path that increases the current spreading, optical properties such as transmittance also need to be considered when the Ag nanoparticles are combined with graphene. As a result, LEDs having a graphene spreading layer with Ag nanoparticles formed in selectively patterned micro-circles displayed more uniform and stable light emission and 1.7 times higher light output power than graphene only LEDs.
机译:为了增强无机基光电器件中石墨烯铺展层的电性能,粘合强度和可靠性,我们引入了通过自组装团聚工艺制备的Ag纳米颗粒。在这里,我们制造了具有各种电流扩展层的InGaN / GaN多量子阱(MQW)蓝色LED:仅石墨烯,覆盖有Ag纳米颗粒的石墨烯覆盖表面,以及仅在选择性构图的微圆中具有Ag纳米颗粒的石墨烯。尽管发现Ag纳米颗粒充当增加电流散布的附加电流路径,但是当将Ag纳米颗粒与石墨烯结合使用时,还需要考虑光学特性,例如透射率。结果,与仅石墨烯的LED相比,具有在选择性地图案化的微圆中形成的具有Ag纳米颗粒的石墨烯铺展层的LED显示出更均匀和稳定的发光,并且光输出功率高出1.7倍。

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