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All solution processing of ITO-free organic solar cell modules directly on barrier foil

机译:直接在隔离膜上进行无ITO有机太阳能电池模块的所有溶液处理

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摘要

In this study, we demonstrate fully solution processed semi-transparent silver electrodes on flexible substrates having a sheet resistance as low as 5 /□ and transmittance of ~30% at 550 nm. We demonstrate the use of this electrode as a substitute for ITO in an inverted organic solar cell (OSC) with the layer sequence, PET/Ag/ZnO/P3HT:PCBM/PEDOT:PSS/Ag where illumination is achieved through the first Ag layer. Power conversion efficiency of up to 1.6% under 1 sun illumination (100 mW cm ~(-2) and AM1.5G) is achieved for small area (1 cm ~2) test devices. We further demonstrate scalability of the semi-transparent Ag electrode fabrication in a roll-to-roll (R2R) process using slot-die coating. This electrode is further utilized in R2R processing of large area modules (active area 35.5 cm ~2) where all layers in the modules are R2R processed with solution-based materials in ambient conditions without any use of vacuum steps. We further demonstrate the possibility of using barrier foil as the substrate in the R2R processing of modules. Module performance is evaluated by current-voltage characterization and Light Beam Induced Current (LBIC imaging). Such a semi-transparent Ag electrode incurs very little material and processing cost and is a cost-effective alternative to ITO for low-cost organic solar cells.
机译:在这项研究中,我们演示了在柔性基板上经过完全固溶处理的半透明银电极,其薄层电阻低至5 /□,在550 nm处的透射率约为30%。我们证明了在层序为PET / Ag / ZnO / P3HT:PCBM / PEDOT:PSS / Ag的情况下,该电极可用于反向有机太阳能电池(OSC)中的ITO替代,其中通过第一层Ag层实现照明。对于小面积(1 cm〜2)测试设备,在1个阳光照射下(100 mW cm〜(-2)和AM1.5G),功率转换效率高达1.6%。我们进一步展示了使用狭缝模头涂层的卷对卷(R2R)工艺中半透明Ag电极制造的可扩展性。该电极还用于大面积模块(有效面积35.5 cm〜2)的R2R处理中,其中模块中的所有层均在环境条件下使用基于溶液的材料进行R2R处理,而无需使用任何真空步骤。我们进一步证明了在模块的R2R处理中将阻隔箔用作基材的可能性。通过电流-电压表征和光束感应电流(LBIC成像)评估模块性能。这种半透明的Ag电极几乎不需要材料和处理成本,并且是用于低成本有机太阳能电池的ITO的具有成本效益的替代方案。

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