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All solution roll-to-roll processed polymer solar cells free from indium-tin-oxide and vacuum coating steps

机译:所有溶液卷对卷处理的聚合物太阳能电池均无氧化铟锡和真空镀膜步骤

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摘要

A roll-to-roll process enabling fabrication of polymer solar cells comprising five layers on flexible substrates is presented. The device geometry is inverted and allow for fabrication on both transparent and non-transparent flexible substrates. The process is illustrated in this work by formation of a bottom electrode comprising silver nanoparticles on a 130 micron thick polyethyleneternaphthalate (PEN) substrate. Subsequently an electron transporting layer of zinc oxide nanoparticles was applied from solution followed by an active layer of P3HT-PCBM and a hole transporting layer of PEDOT:PSS. These first four layers were applied by slot-die coating. The final electrode was applied by screen printing a grid structure that allowed for transmission of 80% of the light. The materials were patterned into stripes allowing for formation of a single cell device and serially connected modules comprising 2, 3 and 8 stripes. All five layers in the device were processed from solution in air and no vacuum steps were employed. An additional advantage is that the use of indium-tin-oxide (ITO) is avoided in this process. The devices were tested under simulated sunlight (1000Wm~(-2), AM1.5G) and gave a typical performance 0.3% in terms of power conversion efficiency (PCE) for the active layer. The low PCE was due to poor transmission of light through the back electrode.
机译:提出了能够在柔性基板上制造包括五层的聚合物太阳能电池的卷对卷工艺。装置的几何形状是倒置的,并允许在透明和不透明的柔性基板上制造。在这项工作中,通过在130微米厚的聚对苯二甲酸乙二醇酯(PEN)基板上形成包含银纳米颗粒的底部电极来说明该过程。随后,从溶液中施加氧化锌纳米粒子的电子传输层,然后施加P3HT-PCBM活性层和PEDOT:PSS的空穴传输层。通过缝口模头涂覆来涂覆这前四层。通过丝网印刷施加允许透射80%的光的网格结构来施加最终电极。将材料图案化成条,以形成单个电池装置和包括2、3和8条的串联模块。装置中的所有五层均由空气中的溶液处理,不采用真空步骤。另一个优点是在此过程中避免了使用氧化铟锡(ITO)。该器件在模拟阳光(1000Wm〜(-2),AM1.5G)下进行了测试,在有源层的功率转换效率(PCE)方面,典型性能为0.3%。低的PCE是由于不良的光通过后电极的传输。

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