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Towards All-Inorganic Transport Layers for Wide-Band Gap Formamidinium Lead Bromide-Based Planar Photovoltaics

机译:用于宽带间隙甲脒铅溴水解平面光伏的全无机输运层

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摘要

Hybrid perovskite photovoltaic devices heavily rely on the use of organic (rather than inorganic) charge-transport layers on top of a perovskite absorber layer because of difficulties in depositing inorganic materials on top of these fragile absorber layers. However, in comparison to the unstable and expensive organic transport materials, inorganic charge transport layers provide improved charge transport and stability to the device architecture. Here, we report photovoltaic devices using all-inorganic transport layers in a planar p-i-n junction device configuration using formamidinium lead tribromide (FAPbBr(3)) as an absorber. Efficient planar devices are obtained through atomic layer deposition of nickel oxide and sputtered zinc oxide as hole- and electron-transport materials, respectively. Using only inorganic charge-transport layers resulted in planar FAPbBr3 devices with a power conversion efficiency of 6.75 % at an open-circuit voltage of 1.23 V. The transition of planar FAPbBr3 devices making from all-organic towards all inorganic charge-transport layers is studied in detail.
机译:杂交钙钛矿光伏器件严重依赖于在钙钛矿吸收层的顶部使用有机(而不是无机)电荷层的用途,因为在这些脆弱的吸收层的顶部沉积无机材料的困难。然而,与不稳定且昂贵的有机运输材料相比,无机电荷输送层为器件架构提供了改进的电荷传输和稳定性。这里,我们使用甲脒铅三溴化甲酰氨酰基(FAPBBR(3))作为吸收器,在平面P-I-N结装置配置中使用全无机输送层的光伏器件报告光伏器件。通过镍氧化镍和溅射的氧化锌作为孔和电子传输材料来获得高效的平面装置。仅使用无机电荷传输层导致平面FAPBBR3器件,电源转换效率为1.23 V的开路电压。研究了从全有机朝向所有无机电荷传输层的平面FAPBBR3器件的转变详细。

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