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Improvement Properties of Hybrid Halide Perovskite Thin Films Prepared by Sequential Evaporation for Planar Solar Cells

机译:平面太阳能电池顺序蒸发制备卤化钙钛矿杂化薄膜的改进性能

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摘要

Thin films of CH3NH3PbI3 and (NH2)2CHPbI3 (from now on abbreviated as MAPI and FAPI respectively), with perovskite structure were prepared by sequential evaporation of lead iodide (PbI2) and methylammonium iodide (MAI) or formamidinium iodide (FAI), with special emphasis on the optimization of its optical, morphologic, and structural properties. For this, the evaporation process was automatically controlled with a system developed using virtual instrumentation (VI) that allows electronic control of both evaporation sources temperature and precursors deposition rates, using proportional integral derivative (PID) and pulse width modulation (PWM) control algorithms developed with the LabView software. Using X-ray diffraction (XRD), information was obtained regarding the phase and crystalline structure of the studied samples as well as the effect of the main deposition parameters on crystallite size and microstrain. We also studied the influence of the main deposition parameters on the optical and morphological properties through measurements of spectral transmittance and scanning electron microscopy (SEM) respectively. It was found that the implemented method of sequential evaporation allows preparing, with a high degree of reproducibility, single phase MAPI and FAPI thin films with appropriate properties to be used as active layer in hybrid solar cells. The applicability of MAPI and FAPI thin films as active layer in photovoltaic devices has been demonstrated by using them in solar cells with structure: FTO/ZnO/MAPI(or FAPI)/P3HT/Au.
机译:通过依次蒸发碘化铅(PbI2)和碘化甲基铵(MAI)或碘化甲酰胺(FAI)制备具有钙钛矿结构的CH3NH3PbI3和(NH2)2CHPbI3薄膜(此后分别简称为MAPI和FAPI)强调优化其光学,形态和结构特性。为此,使用虚拟仪器(VI)开发的系统自动控制蒸发过程,该系统允许使用比例积分微分(PID)和脉冲宽度调制(PWM)控制算法对蒸发源温度和前体沉积速率进行电子控制LabView软件。使用X射线衍射(XRD),可以获得有关所研究样品的相和晶体结构以及主要沉积参数对微晶尺寸和微应变的影响的信息。我们还分别通过测量光谱透射率和扫描电子显微镜(SEM)研究了主要沉积参数对光学和形态性能的影响。已经发现,所实施的顺序蒸发方法允许以高度可再现性制备具有适当特性的单相MAPI和FAPI薄膜,以用作混合太阳能电池中的活性层。通过在结构为FTO / ZnO / MAPI(或FAPI)/ P3HT / Au的太阳能电池中使用MAPI和FAPI薄膜作为光电器件中的有源层,已经证明了它们的适用性。

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