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Effect of annealing over optoelectronic properties of graphene based transparent electrodes

机译:退火基于石墨烯透明电极的光电性能的影响

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Graphene, an atom-thick two dimensional graphitic material have led various fundamental breakthroughs in the field of science and technology. Due to their exceptional optical, physical and electrical properties, graphene based transparent electrodes have shown several applications in organic light emitting diodes, solar cells and thin film transistors. Here, we are presenting effect of annealing over optoelectronic properties of graphene based transparent electrodes. Graphene based transparent electrodes have been prepared by wet chemical approach over glass substrates. After fabrication, these electrodes tested for optical transmittance in visible region. Sheet resistance was measured using four probe method. Effect of thermal annealing at 200 °C was studied over optical and electrical performance of these electrodes. Optoelectronic performance was judged from ratio of direct current conductivity to optical conductivity (σ_(dc)/σ_(opt)) as a figure of merit for transparent conductors. The fabricated electrodes display good optical and electrical properties. Such electrodes can be alternatives for doped metal oxide based transparent electrodes.
机译:石墨烯,原子厚的二维石墨材料在科学和技术领域引领了各种基本突破。由于它们具有出色的光学,物理和电性能,基于石墨烯的透明电极已经示出了有机发光二极管,太阳能电池和薄膜晶体管中的几种应用。这里,我们正在呈现出石墨烯透明电极的光电性能的效果。基于石墨烯基透明电极通过玻璃基板上的湿化学方法制备。制造后,这些电极测试在可见区域中的光学透射率。使用四种探针法测量薄层电阻。在这些电极的光学和电性能下研究了200℃的热退火的影响。判断光电性能,从直流电导率与光导(σ_(DC)/σ_(opt))的比率从透明导体的优选值。制造的电极显示出良好的光学和电气性能。这种电极可以是掺杂金属氧化物的透明电极的替代品。

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