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首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Stable Cesium Formamidinium Lead Halide Perovskites: A Comparison of Photophysics and Phase Purity in Thin Films and Single Crystals
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Stable Cesium Formamidinium Lead Halide Perovskites: A Comparison of Photophysics and Phase Purity in Thin Films and Single Crystals

机译:稳定的铯甲脒铅卤化物钙锌矿:薄膜和单晶中的光药和相纯度的比较

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摘要

The stability of the active layer is an underinvestigated aspect of metal halide perovskite solar cells. Furthermore, the few articles on the subject are typically focused on thin films, which are complicated by the presence of defects and grain boundaries. Herein, a different approach is taken: a perovskite composition that is known to be stable in single crystal form is used, and its (photo-)physical properties are studied in the form of spin-coated thin films. The perovskites are lead-based with cesium and formamidinium as the A-site cations and iodide and bromide as the halide anions, with the formula Cs(0.1)FA(0.9)PbI(3-x)Br(x). These compounds show high potential in terms of stability in single crystal form and closely resemble the compounds that have successfully been used in highly efficient perovskite-silicon tandem solar cells. It is found that a small difference in bromine content (x = 0.45 vs 0.6) has a significant impact in terms of the phase purity and charge carrier lifetimes, and conclude that the thin films of Cs(0.1)FA(0.9)PbI(2.55)Br(0.45) have good potential for the use in optoelectronic devices.
机译:活性层的稳定性是金属卤化物钙酸盐太阳能电池的潜在方面。此外,对象的少数文章通常聚焦在薄膜上,这通过缺陷和晶界的存在复杂。在此,采用不同的方法:使用已知以单晶形式稳定的钙钛矿组合物,并以旋涂的薄膜的形式研究其(光)物理性质。钙酸盐基于铯和甲脒作为A现场阳离子和碘化物和溴化物作为卤化物阴离子,配内Cs(0.1)Fa(0.9)PBI(3-X)Br(X)。这些化合物在单晶形式的稳定性方面表现出高潜力,并且与已经成功用于高效培养的Perovskite-硅串联太阳能电池的化合物非常相似。结果发现溴含量(x = 0.45 Vs 0.6)的少差异对相纯度和电荷载体寿命具有显着影响,并得出结论,Cs(0.1)FA(0.9)PBI(2.55)的薄膜(2.55 )BR(0.45)具有在光电器件中使用的良好潜力。

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