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首页> 外文期刊>Journal of nanoscience and nanotechnology >Inverted Planar Perovskite Solar Cells Based on NiOx Nano Film with Enhanced Efficiency and Stability
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Inverted Planar Perovskite Solar Cells Based on NiOx Nano Film with Enhanced Efficiency and Stability

机译:基于NiOx纳米膜的倒置平面钙钛矿太阳能电池,提高了效率和稳定性

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摘要

The organometal halide perovskite (OHP) materials have attracted much attention throughout the world due to their superb optoelectronic properties. Tremendous progress has been made in the OHP based solar cells with increased efficiency from 3.8% to 24.2% within the last decade, benefiting from efforts in the photovoltaic field. However, all the OHP solar cells with highest efficient are based on a normal mesoporous structure with TiO2 at the bottom, which needs high temperature process. The inverted planar structure OHP solar cells based on PEDOT: PSS suffer from low efficiency (lower than 15%) and inferior stability due to degradation of PEDOT: PSS in ambient air. Herein, we employed sol-gel method to fabricate a NiOx nano film as the hole transporting layer for inverted OHP solar cells. The device performance based on PEDOT: PSS and NiOx were systematically investigated. It was found that the perovskite films on NiOx film had larger grain size and thus lower defects' density. The Capacitance-Voltage measurement indicated that the device based on NiOx exhibited larger built-in potential, which significantly enhanced the open-circuit potential of the OHP solar cells. Furthermore, the solar cell based on NiOx nano film exhibited excellent stability compared with the PEDOT: PSS based device, due to robust property of NiOx in ambient air.
机译:有机卤化物钙钙钛矿(OHP)材料由于其精湛的光电性能而引起了全世界的许多关注。在基于OHP的太阳能电池中取得了巨大进展,在过去十年内提高了3.8%至24.2%的效率,从光伏领域的努力中受益。然而,具有最高效率的OHP太阳能电池基于底部的垂直介孔结构,其需要高温工艺。基于PEDOT的倒平面结构OHP太阳能电池:PSS由于PEDOT的降解而遭受低效率(低于15%)和劣质稳定性:PSS在环境空气中。在此,我们采用溶胶 - 凝胶法制造NiOx纳米膜作为倒的OHP太阳能电池的空穴传输层。基于PEDOT的器件性能:PSS和NIOX系统地被系统地研究。发现NiOx薄膜上的钙钛矿膜具有较大的粒度,从而降低缺陷的密度。电容 - 电压测量表明,基于NIOx的器件表现出较大的内置电位,这显着增强了OHP太阳能电池的开路电位。此外,基于NiOx纳米膜的太阳能电池与基于PEDOT:PSS的装置相比表现出优异的稳定性,由于NIOX在环境空气中的鲁棒性质。

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