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Progression towards high efficiency perovskite solar cells via optimisation of the front electrode and blocking layer

机译:通过优化前电极和阻挡层,向高效钙钛矿太阳能电池发展

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The effects of a fluorine doped tin oxide (FTO) electrode, titanium dioxide (TiO2-x) blocking layer (BL) and perovskite (methyl ammonium lead triiodide) preparation on the overall properties of the photovoltaic cells have been studied. The FTO electrode was deposited by atmospheric pressure chemical vapour deposition (APCVD) and the hole blocking layer by spin coating, atomic layer deposition (ALD) or sputtering. We have shown the importance of obtaining uniform thin films of FTO, with low sheet resistance to aid the formation of pin hole free uniform TiO2-x, blocking layers and hence well adhered, perovskite layers. The optimal BL thickness was 20 nm, while thicker films gave decreased shunt resistance and thinner a greater number of pin holes through the layers. We also showed that the conformal nature of ALD and magnetron sputtering, along with their increased uniformity control over spin coating again improved cell efficiency. The main improvement comes for the smaller R-oc. attributed to an improved electrical transport through particularly the sputtered TiO2-x blocking layer. After identifying the optimised parameters, all the properties were combined to fabricate large solar cells (1 cm(2)) yielding power conversion efficiencies beyond 16%.
机译:研究了氟掺杂氧化锡(FTO)电极,二氧化钛(TiO2-x)阻挡层(BL)和钙钛矿(三甲基碘化铅铵)的制备对光伏电池整体性能的影响。通过大气压化学气相沉积(APCVD)沉积FTO电极,并通过旋涂,原子层沉积(ALD)或溅射沉积空穴阻挡层。我们已经显示出获得具有低薄层电阻的FTO均匀薄膜的重要性,以帮助形成无针孔的均匀TiO2-x阻挡层,从而形成粘附良好的钙钛矿层。最佳的BL厚度为20 nm,而较厚的薄膜会降低分流电阻,并使穿过这些层的针孔数量更薄。我们还表明,ALD和磁控溅射的保形性质以及对旋涂的更高均匀性控制再次提高了电池效率。主要改进来自较小的R-oc。这归因于通过溅射的TiO 2 -x阻挡层的改善的电传输。确定最佳参数后,将所有属性组合起来以制造大型太阳能电池(1 cm(2)),从而产生超过16%的功率转换效率。

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