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Ultra-Flexible Organic Photovoltaics with Nanograting Patterns Based on CYTOP/Ag Nanowires Substrate

机译:基于Cytop / Ag纳米线衬底的纳米人的超柔性有机光伏

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摘要

In this study, we developed a method for fabricating ultrathin polymer substrates that can be used in ultra-flexible organic photovoltaics (OPVs) via a non-vacuum process using cyclic transparent optical polymer. In addition, a Ag nanowire network layer was used as a transparent electrode in a solution process. All processes were conducted on large area via spin coating. The power conversion efficiency (PCE) of the ultra-flexible OPV improved by 6.4% compared to the PCE of the ITO/Glass-based OPV. In addition, the PCE of the OPV increased to 10.12% after introducing nanostructures in the ZnO and photoactive layers. We performed 1000 cycles of compression/relaxation tests to evaluate the mechanical properties of the ultra-flexible OPV, after which, the PCE remained at 67% of the initial value. Therefore, the developed OPV system is suitable as a power source for portable devices.
机译:在该研究中,我们开发了一种制造超薄聚合物基材的方法,其通过使用环状透明光学聚合物通过非真空工艺在超柔性有机光伏(OPV)中。另外,在溶液过程中使用AG纳米线网络层作为透明电极。所有方法通过旋涂在大面积上进行。与基于ITO /玻璃OPV的PCE相比,超柔性OPV的功率转换效率(PCE)提高了6.4%。此外,在引入ZnO和光活性层中的纳米结构后,OPV的PCE增加到10.12%。我们执行了1000个循环的压缩/放松测试,以评估超柔性OPV的机械性能,之后,PCE保持在初始值的67%。因此,开发的OPV系统适合作为便携式设备的电源。

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