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High Performance Ultrathin MoO3/Ag Transparent Electrode and Its Application in Semitransparent Organic Solar Cells

机译:高性能超薄MoO3 / Ag透明电极及其在半透明有机太阳能电池中的应用

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摘要

In this paper, we demonstrate high performance ultrathin silver (Ag) transparent electrodes with a thin MoO3 nucleation layer based on the thermal evaporation method. The MoO3/Ag transparent electrodes fabricated at different deposition rates were compared systematically on aspects of the transmission spectrum, surface resistance, and surface morphology. Our study indicates that with the presence of the MoO3 nucleation layer, an Ag film of only 7 nm thick can achieve percolation and the film is porous instead of forming isolated islands. In addition, the increase of the deposition rate can yield obvious improvement of the surface morphology of the Ag film. Specifically, with the help of a 1 nm thick MoO3 nucleation layer, the Ag film of 9 nm thick realized under the deposition rate of 0.7 nm/s has a surface resistance of about 20 ohm/sq and an average transmittance in the visible light range reaching 74.22%. Such a high performance of transmittance is superior to the reported results in the literature, which inevitably suffer obvious drop in the long wavelength range. Next, we applied the ultrathin MoO3/Ag transparent electrode in organic solar cells. The optimized semitransparent organic solar cell displays a power conversion efficiency of 2.76% and an average transmittance in the visible range of 38% when light is incident from the Ag electrode side.
机译:在本文中,我们基于热蒸发方法演示了具有薄MoO3成核层的高性能超薄银(Ag)透明电极。系统地比较了在不同沉积速率下制备的MoO3 / Ag透明电极的透射光谱,表面电阻和表面形态。我们的研究表明,由于存在MoO3成核层,仅7 nm厚的Ag膜即可实现渗滤,且该膜是多孔的而不是形成孤立的岛。另外,沉积速率的增加可以显着改善Ag膜的表面形态。具体地,借助于1nm厚的MoO 3成核层,以0.7nm / s的沉积速率实现的9nm厚的Ag膜具有约20ohm / sq的表面电阻和可见光范围内的平均透射率。达到74.22%。如此高的透射率性能优于文献报道的结果,在长波长范围内不可避免地会出现明显的下降。接下来,我们将超薄的MoO3 / Ag透明电极应用于有机太阳能电池。当从Ag电极侧入射光时,优化的半透明有机太阳能电池表现出2.76%的功率转换效率和38%的可见光范围内的平均透射率。

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