Design of perovskite/crystalline-silicon monolithic tandem solar cells

被引:47
作者
Altazin, S. [1 ]
Stepanova, L. [1 ]
Werner, J. [2 ]
Niesen, B. [2 ]
Ballif, C. [2 ]
Ruhstaller, B. [1 ,3 ]
机构
[1] Fluxim AG, Katharina Sulzer Pl 2, CH-8400 Winterthur, Switzerland
[2] EPFL, Inst Microengn IMT, Photovolta & Thin Film Elect Lab, Rue Maladiere 71B, CH-2002 Neuchatel, Switzerland
[3] Zurich Univ Appl Sci, Inst Computat Phys, Wildbachstr 21, CH-8401 Winterthur, Switzerland
关键词
OPTICAL LOSSES; THIN-FILMS; ABSORPTION; EFFICIENCY; SPECTRA;
D O I
10.1364/OE.26.00A579
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We present an optical model implemented in the commercial software SETFOS 4.6 for simulating perovskite/silicon monolithic tandem solar cells that exploit light scattering structures. In a first step we validate the model with experimental data of tandem solar cells that either use front- or rear-side textures and extract the internal quantum efficiency of the methyl-ammonium lead iodide (MALI) perovskite sub-cell. In a next step, the software is used to investigate the potential of different device architectures featuring a monolithic integration between the perovskite and silicon sub-cells and exploiting rear- as well as front-side textures for improved light harvesting. We find that, considering the available contact materials, the p-i-n solar cell architecture is the most promising with respect to achievable photocurrent for both flat and textured wafers. Finally, cesium-formamidinium-based perovskite materials with several bandgaps were synthetized, optically characterized and their potential in a tandem device was quantified by simulations. For the simulated layer stack and among the tested materials with bandgaps of 1.7 and 1.6 eV, the one with 1.6 eV bandgap was found to be the most promising, with a potential of reaching a power conversion efficiency of 31%. In order to achieve higher efficiencies using higher band-gap materials, parasitic absorptance in the blue spectral range should be further reduced. (C) 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
引用
收藏
页码:A579 / A590
页数:12
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