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Embedment of nano-sized Ag layer into Ag-doped In2O3 films for use as highly transparent and conductive anode in organic solar cells

机译:将纳米级Ag层嵌入到掺杂Ag的In2O3薄膜中,用作有机太阳能电池中的高透明导电阳极

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By inserting a nano-sized Ag layer between bottom Ag-doped In2O3 (AIO) and a top AIO layer, we were able to control the sheet resistance and optical transmittance of AIO films for application in organic solar cells (OSCs) as a transparent electrode. To optimize the AIO/Ag/AIO multilayer, we investigated the electrical, optical, structural and morphological properties of the AIO/AgIAIO multilayer as a function of Ag interlayer thickness with a constant bottom and top AIO thickness of 35 nm. The optimized AIO/AgIAIO multilayer showed a much lower resistivity of 3.988 x 10(-5) Omega cm and a higher optical transmittance of 84.79% than the values (4.625 x 10(-4) Omega cm and 78.36%) of the single AIO film, due to the high conductivity of the metallic Ag layer and the antireflection effect of the symmetric AIO/Ag/AIO structure. In addition, we investigated the performances of OSCs with AIO/AgIAIO electrodes as a function of Ag interlayer thickness to determine the optimal Ag thickness to produce a high power conversion efficiency (PCE) of the OSCs. Based on the PCE of the OSCs, we correlated the performance of the OSCs with the Ag interlayer thickness in the AIO/Ag/AIO multilayer and suggested a possible mechanism to explain the dependency of PCE on Ag thickness in AIO/Ag/AIO multilayer electrodes. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过在底部掺Ag的In2O3(AIO)和顶部AIO层之间插入纳米尺寸的Ag层,我们能够控制AIO膜的薄层电阻和透光率,以用作透明电极的有机太阳能电池(OSC) 。为了优化AIO / Ag / AIO多层膜,我们研究了AIO / AgIAIO多层膜的电学,光学,结构和形态学性质与Ag中间层厚度的函数关系,底部和顶部AIO的恒定厚度为35 nm。与单个AIO的值(4.625 x 10(-4)Omega cm和78.36%)相比,优化的AIO / AgIAIO多层膜的电阻率低得多,为3.988 x 10(-5)Omega cm,较高的光透射率为84.79%由于金属Ag层的导电性高和对称的AIO / Ag / AIO结构具有抗反射作用,因此可以形成薄膜。此外,我们调查了具有AIO / AgIAIO电极的OSC的性能与Ag中间层厚度的关系,以确定可产生OSC的高功率转换效率(PCE)的最佳Ag厚度。基于OSC的PCE,我们将OSC的性能与AIO / Ag / AIO多层中的Ag中间层厚度相关联,并提出了一种可能的机制来解释PCE对AIO / Ag / AIO多层电极中的Ag厚度的依赖性。 。 (C)2015 Elsevier B.V.保留所有权利。

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