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Efficient Ni/Au Mesh Transparent Electrodes for ITO-Free Planar Perovskite Solar Cells

机译:适用于无ITO平面钙钛矿太阳能电池的高效Ni / Au网格透明电极

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摘要

Indium thin oxide (ITO)-free planar perovskite solar cells (PSCs) were fabricated at a low temperature (150 °C) in this work based on the transparent electrode of photolithography processed nickel/gold (Ni/Au) mesh and the high conductivity polymer, PH1000. Ultrathin Au was introduced to increase the conductivity of metal mesh, and the optimal hexagonal Ni (30 nm)/Au (10 nm) mesh (line width of 5 μm) shows a transmittance close to 80% in the visible light region and a sheet resistance lower than 16.9 Ω/sq. The conductive polymer PH1000 not only smooths the raised surface of the metal mesh but also enhances the charge collection ability of metal mesh. The fabricated PSCs have the typical planar structure (glass/Ni-Au mesh/PH1000/PEDOT:PSS/MAyFA1−yPbIxCl3−x/PCBM/BCP/Ag) and the champion PSC (0.09 cm2) obtains a power conversion efficiency (PCE) of 13.88%, negligible current hysteresis, steady current density and PCE outputs, and good process repeatability. Its photovoltaic performance and stability are comparable to the reference PSC based on the ITO electrodes (PCE = 15.70%), which demonstrates that the Ni/Au mesh transparent electrodes are a promising ITO alternative to fabricate efficient PSCs. The relatively lower performance of Ni/Au based PSC results from the relatively slower charge extraction and stronger charge recombination than the ITO based PSC. Further, we tried to fabricate the large area (1 cm2) device and achieve a PCE over 6% with negligible hysteresis and steady current density and PCE outputs. The improvements of perovskite film quality and interface modification should be an effective approach to further enhance the device performance of Ni/Au based PSCs, and the Ni/Au mesh electrode may find wider applications in PSCs and flexible devices.
机译:在这项工作中,基于光刻处理的镍/金(Ni / Au)网格的透明电极和高导电性,在低温(150°C)下制造了无铟薄氧化物(ITO)的平面钙钛矿太阳能电池(PSC)。聚合物,PH100​​0。引入了超薄金以增加金属网的导电性,最佳的六角形Ni(30 nm)/ Au(10 nm)网(线宽5μm)在可见光区域和薄片中的透射率接近80%电阻低于16.9Ω/ sq。导电聚合物PH100​​0不仅使金属网的凸起表面光滑,而且增强了金属网的电荷收集能力。制成的PSC具有典型的平面结构(玻璃/ Ni-Au网格/ PH100​​0 / PEDOT:PSS / MAyFA1-yPbIxCl3-x / PCBM / BCP / Ag)和最佳PSC(0.09 cm 2 )获得了13.88%的功率转换效率(PCE),可忽略的电流滞后,稳定的电流密度和PCE输出以及良好的工艺可重复性。其光伏性能和稳定性与基于ITO电极的参考PSC相当(PCE = 15.70%),这表明Ni / Au网状透明电极是制造有效PSC的有前途的ITO替代品。与基于ITO的PSC相比,基于Ni / Au的PSC相对较低的性能归因于相对较慢的电荷提取和较强的电荷复合。此外,我们尝试制造大面积(1 cm 2 )器件,以使PCE超过6%,而滞后可以忽略不计,并且电流密度和PCE输出保持稳定。钙钛矿薄膜质量的改进和界面改性应该是进一步提高Ni / Au基PSC器件性能的有效方法,并且Ni / Au网状电极可在PSC和柔性器件中找到更广泛的应用。

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