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Metal-Oxide-Free Methylammonium Lead Iodide Perovskite-Based Solar Cells: the Influence of Organic Charge Transport Layers

机译:不含金属氧化物的甲基铵碘化铅钙钛矿型太阳能电池:有机电荷传输层的影响

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摘要

Metal-oxide-free methylammonium lead iodide perovskite-based solar cells are prepared using a dual-source thermal evaporation method. This method leads to high quality reproducible films with large crystal domain sizes allowing for an in depth study of the effect of perovskite film thickness and the nature of the electron and hole blocking layers on the device performance. The power conversion efficiency increases from 4.7% for a device with only an organic electron blocking layer to almost 15% when an organic hole blocking layer is also employed. In addition to the in depth study on small area cells, larger area cells (approx. 1 cm−2) are prepared and exhibit efficiencies in excess of 10%.
机译:使用双源热蒸发法制备不含金属氧化物的甲基铵碘化铅钙钛矿型太阳能电池。此方法可产生具有大晶畴尺寸的高质量可复制膜,从而可以深入研究钙钛矿膜厚度的影响以及电子和空穴阻挡层的性质对器件性能的影响。当仅使用有机电子阻挡层时,功率转换效率从仅具有有机电子阻挡层的器件的4.7%提高到几乎15%。除了对小面积电池的深入研究之外,还准备了较大面积的电池(约1 cm-2),其效率超过10%。

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