Nanophotonic-structured front contact for high-performance perovskite solar cells

被引:0
|
作者
Md.Akhtaruzzaman [1 ,2 ,3 ]
Mohammad Ismail Hossain [4 ,5 ]
Mohammad Aminul Islam [6 ,7 ]
Md.Shahiduzzaman [8 ]
Ghulam Muhammad [9 ]
A.K.Mahmud Hasan [1 ]
Yuen Hong Tsang [4 ]
Kamaruzzaman Sopian [1 ]
机构
[1] Solar Energy Research Institute (SERI), Universiti Kebangsaan Malaysia
[2] Centre for Integrated Systems Engineering and Advanced Technologies (Integra), Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia (UKM)
[3] Graduate School of Pure and Applied Sciences, University of Tsukuba
[4] Department of Applied Physics, Hong Kong Polytechnic University (PolyU)
[5] Department of Electrical and Computer Engineering, University of California
[6] Department of Electrical Engineering, Faculty of Engineering, University of Malaya, Jalan Universiti
[7] Institute of Sustainable Energy, Universiti Tenaga Nasional (The National Energy University),Jalan IKRAM-UNITEN
[8] Nanomaterials Research Institute (NanoMaRi), Kanazawa University
[9] Department of Computer Engineering, College of Computer and Information Sciences, King Saud University
关键词
D O I
暂无
中图分类号
TB383.1 []; TM914.4 [太阳能电池];
学科分类号
070205 ; 080501 ; 080502 ; 1406 ;
摘要
We report the design of a nanophotonic metaloxide front contact aimed at perovskite solar cells(PSCs) to enhance optoelectronic properties and device stability in the presence of ultraviolet(UV) light.High-quality Cr-doped ZnO film was prepared by industrially feasible magnetron sputter deposition for the electron transport layer of PSCs.As a means,the influence of the Cr content on the film and device was systematically determined.In-depth device optics and electrical effects were studied using advanced three-dimensional opto-electrical multiphysics rigorous simulations,optimizing the front contact for realizing high performance.The numerical simulation was validated by fabricating PSCs optimized to reach high performance,energy conversion efficiency(ECE)=17.3%,open-circuit voltage(VOC)=1.08 V,short-circuit current density(JSC)=21.1 mA cm-2,and fillfactor(FF)=76%.Finally,a realistic front contact of nanophotonic architecture was proposed while improving broadband light absorption of the solar spectrum and light harvesting,resulting in enhanced quantum efficiency(QE).The nanophotonic PSC enables JSCimprovement by~17%while reducing the reflection by 12%,resulting in an estimated conversion efficiency over 23 %.It is further demonstrated how the PSCs’ UV-stability can be improved without considerably sacrificing optoelectronic performances.Particulars of nanophotonic designed ZnO:Cr front contact,PSCs device,and fabrication process are described.
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页码:1727 / 1740
页数:14
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