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金属-钙钛矿-金属背接触太阳能电池中的偶极场辅助电荷提取

Dipole-field-assisted charge extraction in metal-perovskite-metal back-contact solar cells.

作者信息

Lin Xiongfeng, Jumabekov Askhat N, Lal Niraj N, Pascoe Alexander R, Gómez Daniel E, Duffy Noel W, Chesman Anthony S R, Sears Kallista, Fournier Maxime, Zhang Yupeng, Bao Qiaoliang, Cheng Yi-Bing, Spiccia Leone, Bach Udo

机构信息

Department of Materials Science & Engineering, Monash University, Clayton, VIC, 3800, Australia.

Department of Chemical Engineering, Monash University, Clayton, VIC, 3800, Australia.

出版信息

Nat Commun. 2017 Sep 20;8(1):613. doi: 10.1038/s41467-017-00588-3.

Abstract

Hybrid organic-inorganic halide perovskites are low-cost solution-processable solar cell materials with photovoltaic properties that rival those of crystalline silicon. The perovskite films are typically sandwiched between thin layers of hole and electron transport materials, which efficiently extract photogenerated charges. This affords high-energy conversion efficiencies but results in significant performance and fabrication challenges. Herein we present a simple charge transport layer-free perovskite solar cell, comprising only a perovskite layer with two interdigitated gold back-contacts. Charge extraction is achieved via self-assembled monolayers and their associated dipole fields at the metal-perovskite interface. Photovoltages of ~600 mV generated by self-assembled molecular monolayer modified perovskite solar cells are equivalent to the built-in potential generated by individual dipole layers. Efficient charge extraction results in photocurrents of up to 12.1 mA cm under simulated sunlight, despite a large electrode spacing.Simplified device concepts may become important for the development of low cost photovoltaics. Lin et al. report solar cells based on interdigitated gold back-contacts and metal halide perovskites where charge extraction is assisted via a dipole field generated by self-assembled molecular monolayers.

摘要

有机-无机杂化卤化物钙钛矿是低成本的可溶液加工的太阳能电池材料,其光伏特性可与晶体硅相媲美。钙钛矿薄膜通常夹在空穴和电子传输材料的薄层之间,这些材料能有效地提取光生电荷。这带来了高能量转换效率,但也导致了显著的性能和制造挑战。在此,我们展示了一种简单的无电荷传输层钙钛矿太阳能电池,仅由一个带有两个相互交错的金背接触的钙钛矿层组成。电荷提取是通过在金属-钙钛矿界面处的自组装单分子层及其相关的偶极场实现的。由自组装分子单分子层修饰的钙钛矿太阳能电池产生的约600 mV的光电压相当于单个偶极层产生的内建电势。尽管电极间距很大,但在模拟阳光下,高效的电荷提取导致了高达12.1 mA cm的光电流。简化的器件概念可能对低成本光伏技术的发展很重要。林等人报道了基于相互交错的金背接触和金属卤化物钙钛矿的太阳能电池,其中电荷提取通过自组装分子单分子层产生的偶极场来辅助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b88/5606993/420d4d248b56/41467_2017_588_Fig1_HTML.jpg

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