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Silver Nanowires Binding with Sputtered ZnO to Fabricate Highly Conductive and Thermally Stable Transparent Electrode for Solar Cell Applications

机译:银纳米线与溅射的ZnO结合以制造用于太阳能电池的高导电性和热稳定透明电极

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Silver nanowire (AgNW) film has been demonstrated as excellent and low cost transparent electrode in organic solar cells as an alternative to replace scarce and expensive indium tin oxide (ITO). However, the low contact area and weak adhesion with low-lying surface as well as junction resistance between nanowires have limited the applications of AgNW film to thin film solar cells. To resolve this problem, we fabricated AgNW film as transparent conductive electrode (TCE) by binding with a thin layer of sputtered ZnO (40 nm) which not only increased contact area with low-lying surface in thin film solar cell but also improved conductivity by connecting AgNWs at the junction. The TCE thus fabricated exhibited transparency and sheet resistance of 92% and 20 Omega/boxed dot], respectively. Conductive atomic force microscopy (C-AFM) study revealed the enhancement of current collection vertically and laterally through AgNWs after coating with ZnO thin film. The CuInGaSe2 solar cell with TCE of our AgNW(ZnO) demonstrated the maximum power conversion efficiency of 13.5% with improved parameters in comparison to solar cell fabricated with conventional ITO as TCE.
机译:银纳米线(AgNW)膜已被证明是有机太阳能电池中出色且低成本的透明电极,可替代稀缺且昂贵的铟锡氧化物(ITO)。然而,低接触表面的低接触面积和与低洼表面的弱粘合性以及纳米线之间的结电阻限制了AgNW膜在薄膜太阳能电池中的应用。为解决此问题,我们通过与溅射的ZnO薄层(40 nm)结合来制造AgNW膜作为透明导电电极(TCE),这不仅增加了薄膜太阳能电池与低洼表面的接触面积,而且通过在联结处连接AgNW。这样制造的TCE分别显示出92%的透明性和薄层电阻和20Ω/盒点。导电原子力显微镜(C-AFM)研究表明,在涂覆ZnO薄膜后,通过AgNWs垂直和横向收集电流的能力增强。与使用传统ITO作为TCE制造的太阳能电池相比,具有我们的AgNW(ZnO)的TCE的CuInGaSe2太阳能电池具有13.5%的最大功率转换效率,并且具有改进的参数。

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