Modified solar cells with antireflection coatings

被引:0
|
作者
El-Khozondar H.J. [1 ]
El-Khozondar R.J. [2 ]
Al Afif R. [3 ]
Pfeifer C. [3 ]
机构
[1] Electrical Engineering Department, Islamic University of Gaza, P.O. Box 108, Gaza
[2] Physics Department, Al-Aqsa University, Gaza
[3] Institute of Chemical and Energy Engineering, Department of Material Sciences and Process Engineering, University of Natural Resources and Life Sciences, Muthgasse 107, Vienna, 1190, Vienna
来源
关键词
Antireflective coating; SiN[!sub]x[!/sub; Sol-Gel; Solar cell;
D O I
10.1016/j.ijft.2021.100103
中图分类号
学科分类号
摘要
Designing a solar cell that can harvest energy with a high level of efficiency is an important research topic. For improving the performance of solar cells, this paper introduces four proposed structures for solar cells and examines their efficiencies for potential production with low cost and high efficiency. In each model, the absorbent material is Borofloat glass and the antireflection coatings used are SiNx and sol-gel -based materials. The four proposed solar cell structures are as follows: (i) a three-layer solar cell in which a sol-gel film is used to match the refractive index between the glass substrate and air cladding; (ii) a four-layer solar cell in which a sol-gel film is used to match the refractive index between SiNx laid on top of a glass substrate and air cladding; (iii) a four-layer structure in which a sol-gel film topped with air cladding is used as a match between the glass and SiNx; and (iv) a four-layer solar cell in which two layers of SiNx are stacked between the glass and the air. A transfer-matrix method is used to solve for the total transmission and total reflection for all structures, and the effects of the film thicknesses and incidence angles are considered in each case. An analysis is carried out using Maple 17, and the results show that using a sol-gel material between glass and air gives almost zero reflection for a wide range of wavelengths, meaning that this can be used as a perfect absorbent and can therefore be recommended for high-efficiency solar cells. Using two layers of SiNx between the air and glass gives almost zero reflection at 600 nm, making this approach an outstanding candidate for solar cells with a maximum absorption of around 600 nm. The other two structures have lower values of transmission, meaning that they are good candidates for low-efficiency solar cells. However, further techno-economic studies of the proposed structures should be carried out, and that solar cell manufacturers should consider these structures. © 2021 The Author(s)
引用
收藏
相关论文
共 50 条
  • [21] Design of porous silicon antireflection coatings for silicon solar cells
    Strehlke, S
    Bastide, S
    Guillet, J
    Lévy-Clément, C
    MATERIALS SCIENCE AND ENGINEERING B-SOLID STATE MATERIALS FOR ADVANCED TECHNOLOGY, 2000, 69 : 81 - 86
  • [22] Nanowire-based multifunctional antireflection coatings for solar cells
    Hiralal, Pritesh
    Chien, Chihtao
    Lal, Niraj N.
    Abeygunasekara, Waranatha
    Kumar, Abhishek
    Butt, Haider
    Zhou, Hang
    Unalan, Husnu Emrah
    Baumberg, Jeremy J.
    Amaratunga, Gehan A. J.
    NANOSCALE, 2014, 6 (23) : 14555 - 14562
  • [23] MIS GRATING SOLAR-CELLS WITH NONINVERTING ANTIREFLECTION COATINGS
    GIRISCH, R
    MERTENS, RP
    VANOVERSTRAETEN, R
    SOLID-STATE ELECTRONICS, 1985, 28 (12) : 1169 - 1179
  • [24] Single-Layer Antireflection Coatings for GaAs Solar Cells
    Hovhannisyan, A. S.
    JOURNAL OF CONTEMPORARY PHYSICS-ARMENIAN ACADEMY OF SCIENCES, 2008, 43 (03) : 136 - 138
  • [25] SPRAY-ON ANTIREFLECTION COATINGS FOR SILICON SOLAR-CELLS
    KERN, W
    TRACY, E
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY, 1980, 17 (01): : 374 - 375
  • [26] Antireflection coatings based on fluoride formulations for organic solar cells
    S. Kh. Suleimanov
    P. Berger
    V. G. Dyskin
    M. U. Dzhanklych
    A. G. Bugakov
    O. A. Dudko
    N. A. Kulagina
    M. Kim
    Technical Physics Letters, 2016, 42 : 359 - 361
  • [27] Graded SiOxNy layers as antireflection coatings for solar cells application
    Lipinski, M.
    Kluska, S.
    Czternastek, H.
    Zieba, P.
    MATERIALS SCIENCE-POLAND, 2006, 24 (04):
  • [28] Reduction of optical losses in colored solar cells with multilayer antireflection coatings
    Selj, J. H.
    Mongstad, T. T.
    Sondena, R.
    Marstein, E. S.
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2011, 95 (09) : 2576 - 2582
  • [29] Optimized Single and Double Layer Antireflection Coatings for GaAs Solar Cells
    Bahrami, Ali
    Mohammadnejad, Shahram
    Abkenar, Nima Jouyandeh
    Soleimaninezhad, Saeede
    INTERNATIONAL JOURNAL OF RENEWABLE ENERGY RESEARCH, 2013, 3 (01): : 79 - 83
  • [30] High-efficiency antireflection nanostructural optical coatings for solar cells
    O. N. Gadomskii
    K. K. Altunin
    N. M. Ushakov
    I. D. Kosobudskii
    V. Ya. Podvigalkin
    D. M. Kulbatskii
    Technical Physics, 2010, 55 : 996 - 1002