首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Light management: porous 1-dimensional nanocolumnar structures as effective photonic crystals for perovskite solar cells
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Light management: porous 1-dimensional nanocolumnar structures as effective photonic crystals for perovskite solar cells

机译:光管理:多孔的一维纳米柱状结构,可作为钙钛矿太阳能电池的有效光子晶体

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摘要

Hybrid organic-inorganic perovskite solar cells are a topic of increasing interest, as in a short time span they are able to lead in the third generation photovoltaics. Organohalide perovskites possess exceptional optoelectronic and physical properties, thus making their implementation possible in many diverse configurations of photovoltaic devices. In this work, we present three different configurations of porous 1-dimensional photonic crystals (1-DPCs) based on alternated nanocolumnar layers of oxides with different refractive indices (n) that were deposited by Physical Vapor Deposition at Oblique Angle Deposition (PVD-OAD). They are then implemented as the photoanode in CH3NH3PbI3 solar cells to improve the management of light into the device. These configurations improved the performance of the photovoltaic system by designing a light interference structure capable of enhancing the absorption capability of the perovskite. A device fabricated using these photonic crystal structures presented an efficiency >12% in contrast with only 10.22% for a reference device based on non-photonic crystal TiO2 layers deposited under analogous conditions.
机译:混合有机-无机钙钛矿太阳能电池是一个越来越引起人们关注的话题,因为它们能够在短时间内引领第三代光伏技术。有机卤化物钙钛矿具有优异的光电和物理特性,因此使其在光伏器件的许多不同配置中都可以实现。在这项工作中,我们介绍了三种不同结构的多孔一维光子晶体(1-DPC),它们基于具有不同折射率(n)的交替纳米柱状氧化物层,这些层是通过在斜角沉积(PVD-OAD)上进行物理气相沉积而沉积的)。然后将它们实现为CH3NH3PbI3太阳能电池中的光电阳极,以改善对设备的光管理。这些构造通过设计能够增强钙钛矿的吸收能力的光干涉结构而改善了光伏系统的性能。使用这些光子晶体结构制造的器件的效率大于12%,而基于在类似条件下沉积的非光子晶体TiO2层的参考器件的效率仅为10.22%。

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