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Effect of Mesostructured Layer upon Crystalline Properties and Device Performance on Perovskite Solar Cells

机译:介孔结构层对钙钛矿太阳电池晶体结构和器件性能的影响

摘要

One of the most fascinating characteristics of perovskite solar cells (PSCs) is the retrieved obtainment of outstanding photovoltaic (PV) performances withstanding important device configuration variations. Here we have analyzed CH3NH3PbI3–xClx in planar or in mesostructured (MS) configurations, employing both titania and alumina scaffolds, fully infiltrated with perovskite material or presenting an overstanding layer. The use of the MS scaffold induces to the perovskite different structural properties, in terms of grain size, preferential orientation, and unit cell volume, in comparison to the ones of the material grown with no constraints, as we have found out by X-ray diffraction analyses. We have studied the effect of the PSC configuration on photoinduced absorption and time-resolved photoluminescence, complementary techniques that allow studying charge photogeneration and recombination. We have estimated electron diffusion length in the considered configurations observing a decrease when the material is confined in the MS scaffold with respect to a planar architecture. However, the presence of perovskite overlayer allows an overall recovering of long diffusion lengths explaining the record PV performances obtained with a device configuration bearing both the mesostructure and a perovskite overlayer. Our results suggest that performance in devices with perovskite overlayer is mainly ruled by the overlayer, whereas the mesoporous layer influences the contact properties
机译:钙钛矿太阳能电池(PSC)最引人入胜的特性之一是获得了出色的光伏(PV)性能,并且可以承受重要的器件配置变化。在这里,我们使用平面或介孔结构(MS)配置的CH3NH3PbI3-xClx进行了分析,同时使用了钛酸钙和氧化铝支架,并充分渗入了钙钛矿材料或形成了一层覆盖层。与我们通过X射线发现的无限制生长的材料相比,MS支架的使用在晶粒尺寸,优先取向和晶胞体积方面具有不同的结构特性。衍射分析。我们已经研究了PSC配置对光诱导吸收和时间分辨光致发光的影响,这些互补技术可以研究电荷的光生和重组。我们已经估计了考虑到的构型中的电子扩散长度,观察到当材料相对于平面结构被限制在MS支架中时,电子的扩散长度会减小。然而,钙钛矿覆盖层的存在允许长扩散长度的整体恢复,这解释了用同时具有介孔结构和钙钛矿覆盖层的器件配置获得的记录的PV性能。我们的结果表明,具有钙钛矿覆盖层的器件的性能主要由覆盖层决定,而介孔层会影响接触性能

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