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The interaction between hybrid organic-inorganic halide perovskite and selective contacts in perovskite solar cells: an infrared spectroscopy study

机译:钙钛矿太阳能电池中有机-无机卤化物钙钛矿杂化与选择性接触之间的相互作用:红外光谱研究

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The interaction of hybrid organic-inorganic halide perovskite and selective contacts is crucial to get efficient, stable and hysteresis-free perovskite-based solar cells. In this report, we analyze the vibrational properties of methylammonium lead halide perovskites deposited on different substrates by infrared absorption (IR) measurements (4000-500 cm(-1)). The materials employed as substrates are not only characterized by different chemical natures (TiO2, ZnO and Al2O3), but also by different morphologies. For all of them, we have investigated the influence of these substrate properties on perovskite formation and its degradation by humidity. The effect of selective-hole contact (Spiro-OmeTad and P3HT) layers on the degradation rate by moisture has also been studied. Our IR results reveal the existence of a strong interaction between perovskite and all ZnO materials considered, evidenced by a shift of the peaks related to the N-H vibrational modes. The interaction even induces a morphological change in ZnO nanoparticles after perovskite deposition, pointing to an acid-base reaction that takes place through the NH3+ groups of the methylammonium cation. Our IR and X-ray diffraction results also indicate that this specific interaction favors perovskite decomposition and PbI2 formation for ZnO/perovskite films subjected to humid conditions. Although no interaction is observed for TiO2, Al2O3, and the hole selective contact, the morphology and chemical nature of both contacts appear to play an important role in the rate of degradation upon exposure to moisture.
机译:杂化有机-无机卤化物钙钛矿与选择性接触的相互作用对于获得高效,稳定和无滞后的钙钛矿基太阳能电池至关重要。在此报告中,我们通过红外吸收(IR)测量(4000-500 cm(-1))分析了沉积在不同基材上的甲基铵卤化铅铵钙钛矿的振动特性。用作基材的材料不仅具有不同的化学性质(TiO2,ZnO和Al2O3),而且具有不同的形态。对于所有这些材料,我们已经研究了这些基材性能对钙钛矿形成及其受湿度降解的影响。还研究了选择性孔接触层(Spiro-OmeTad和P3HT)对水分降解速率的影响。我们的红外结果表明,钙钛矿与所考虑的所有ZnO材料之间都存在很强的相互作用,这与与N-H振动模式有关的峰位移证明了这一点。钙钛矿沉积后,这种相互作用甚至会引起ZnO纳米颗粒的形态变化,表明通过甲基铵阳离子的NH3 +基发生了酸碱反应。我们的IR和X射线衍射结果还表明,这种特殊的相互作用有利于湿润条件下ZnO /钙钛矿薄膜的钙钛矿分解和PbI2的形成。尽管未观察到TiO2,Al2O3和空穴选择性接触的相互作用,但两种接触的形态和化学性质似乎在暴露于湿气时对降解速率起着重要作用。

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