Water-Repellent Low-Dimensional Fluorous Perovskite as Interfacial Coating for 20% Efficient Solar Cells

被引:123
作者
Cho, Kyung Taek [1 ]
Zhang, Yi [1 ,5 ]
Orlandi, Simonetta [2 ]
Cavazzini, Marco [2 ]
Zimmermann, Iwan [1 ]
Lesch, Andreas [3 ]
Tabet, Nouar [4 ]
Pozzi, Gianluca [2 ]
Grancini, Giulia [1 ]
Nazeeruddin, Mohammad Khaja [1 ]
机构
[1] Ecole Polytech Fed Lausanne Valais Wallis, Grp Mol Engn Funct Mat, CH-1951 Sion, Switzerland
[2] CNR, ISTM, Via Golgi 19, I-20133 Milan, Italy
[3] Ecole Polytech Fed Lausanne Valais Wallis, LEPA, CH-1951 Sion, Switzerland
[4] Hamad Bin Khalifa Univ, Qatar Environm & Energy Res Inst, Qatar Fdn, Doha 5825, Qatar
[5] Tianjin Univ, Sch Chem Engn & Technol, Tianjin 300072, Peoples R China
基金
瑞士国家科学基金会;
关键词
Perovskite solar cells; fluorinated cation; passivation; 2D Perovskite; 2D/3D perovskite; water-repellent perovskite; ORGANIC-INORGANIC PEROVSKITES; STABILITY; DEGRADATION;
D O I
10.1021/acs.nanolett.8b01863
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Hybrid perovskite solar cells have been capturing an enormous research interest in the energy sector due to their extraordinary performances and ease of fabrication. However, low device lifetime, mainly due to material and device degradation upon water exposure, challenges their near-future commercialization. Here, we synthesized a new fluorous organic cation used as organic spacer to form a low-dimensional perovskite (LDP) with an enhanced water-resistant character. The LDP is integrated with three-dimensional (3D) perovskite absorbers in the form of MA(0.9)FA(0.1)PbI(3) (FA = NH2CH = NH2+, MA = CH3NH3+) and CS(0.1)FA(0.74)MA(0.13)PbI(2.48)Br(0.39). In both cases, a LDP layer self-assembles as a thin capping layer on the top of the 3D bulk, making the perovskite surface hydrophobic. Our easy and robust approach, validated for different perovskite compositions, limits the interface deterioration in perovskite solar cells yielding to >20% power conversion efficient solar cells with improved stability, especially pronounced in the first hours of functioning under environmental conditions. As a consequence, single and multijunction perovskite devices, such as tandem solar cells, can benefit from the use of the waterproof stabilization here demonstrated, a concept which can be further expanded in the perovskite optoelectronic industry beyond photovoltaics.
引用
收藏
页码:5467 / 5474
页数:8
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