Optical Simulation-Aided Design and Engineering of Monolithic Perovskite/Silicon Tandem Solar Cells

被引:9
作者
Zhao, Yifeng [1 ]
Datta, Kunal [2 ]
Phung, Nga [3 ]
Bracesco, Andrea E. A. [3 ]
Zardetto, Valerio [4 ]
Paggiaro, Giulia [1 ]
Liu, Hanchen [1 ]
Fardousi, Mohua [1 ]
Santbergen, Rudi [1 ]
Moya, Paul Procel [1 ]
Han, Can [1 ]
Yang, Guangtao [1 ]
Wang, Junke [2 ]
Zhang, Dong [2 ,4 ]
van Gorkom, Bas T. [2 ]
Van der Pol, Tom P. A. [2 ]
Verhage, Michael [2 ]
Wienk, Martijn M. [2 ]
Kessels, Wilhelmus M. M. [3 ]
Weeber, Arthur [1 ,4 ]
Zeman, Miro [1 ]
Mazzarella, Luana [1 ]
Creatore, Mariadriana [3 ,5 ]
Janssen, Rene A. J. [2 ,6 ]
Isabella, Olindo [1 ]
机构
[1] Delft Univ Technol, Photovolta Mat & Devices Grp, NL-2628 CD Delft, Netherlands
[2] Eindhoven Univ Technol, Inst Complex Mol Syst, Mol Mat & Nanosyst, NL-5600 MB Eindhoven, Netherlands
[3] Eindhoven Univ Technol, Dept Appl Phys & Sci Educ, NL-5600 MB Eindhoven, Netherlands
[4] TNO, NL-5656 AE Eindhoven, Netherlands
[5] Eindhoven Inst Renewable Energy Syst, NL-5600 MB Eindhoven, Netherlands
[6] Dutch Inst Fundamental Energy Res, NL-5612 AJ Eindhoven, Netherlands
关键词
perovskite; silicon heterojunction; tandem solar cells; optical simulations; two-terminal; HALIDE SEGREGATION; EFFICIENCY; FILMS; SILICON;
D O I
10.1021/acsaem.3c00136
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Monolithic perovskite/c-Si tandem solar cells have attracted enormous research attention and have achieved efficiencies above 30%. This work describes the development of monolithic tandem solar cells based on silicon heterojunction (SHJ) bottom-and perovskite top-cells and highlights light management techniques assisted by optical simulation. We first engineered (i)a-Si:H passivating layers for (100)-oriented flat c-Si surfaces and combined them with various (n)a-Si:H, (n)nc-Si:H, and (n)nc-SiOx:H interfacial layers for SHJ bottom-cells. In a symmetrical configuration, a long minority carrier lifetime of 16.9 ms was achieved when combining (i)a-Si:H bilayers with (n)nc-Si:H (extracted at the minority carrier density of 1015 cm-3). The perovskite sub-cell uses a photostable mixed-halide composition and surface passivation strategies to minimize energetic losses at charge-transport interfaces. This allows tandem efficiencies above 23% (a maximum of 24.6%) to be achieved using all three types of (n)-layers. Observations from experimentally prepared devices and optical simulations indicate that both (n)nc-SiOx:H and (n)nc-Si:H are promising for use in high-efficiency tandem solar cells. This is possible due to minimized reflection at the interfaces between the perovskite and SHJ sub-cells by optimized interference effects, demonstrating the applicability of such light management techniques to various tandem structures.
引用
收藏
页码:5217 / 5229
页数:13
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