Influence of nanostructure geometry on light trapping in solar cells

被引:11
作者
Pylypova, O. [1 ]
Havryliuk, O. [3 ]
Antonin, S. [2 ]
Evtukh, A. [1 ,2 ]
Skryshevsky, V. [1 ]
Ivanov, I. [1 ]
Shmahlii, S. [2 ]
机构
[1] Taras Shevchenko Natl Univ Kyiv, Inst High Technol, 60 Volodymyrska Str, UA-01033 Kiev, Ukraine
[2] NAS Ukraine, VE Lashkaryov Inst Semicond Phys, 41 Pr Nauki, UA-03028 Kiev, Ukraine
[3] NAS Ukraine, Chuiko Inst Surface Chem, 17 Ganeral Naumova Str, UA-03164 Kiev, Ukraine
关键词
Si nanowires; MacEtch method; Localized surface plasmon resonance; Light trapping; OPTICAL-PROPERTIES; SILICON NANOWIRES;
D O I
10.1007/s13204-021-01699-6
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The aim of this research was to detect the influence of the silicon nanowires geometry and silver nanoparticles on the wafer surface on light trapping for application in solar cells with radial p-n junction. Si-NWs arrays were fabricated on p-type (100) silicon wafers with specific resistance of 10 ohm x cm. We used MacEtch method to form Si nanowires. In our study to deposit the additional silver nanoparticles on the surface of the nanowires, the flushing time was reduced to 10 min. The structural and optical properties of silicon nanowires were studied. The absorption, transmittance and reflectance spectra for periodic nanostructures with different parameters were calculated by FDTD (Finite-Difference Time-Domain) method. The FDTD method is a powerful numerical algorithm for direct solution of Maxwell's equations. The realization of this method is discrete both in space and in time. The presented structures are described on a discrete mesh consisting of Yee cells and the Maxwell equations. They are solved discretely over time on this grid. As a result, through the method of the catalytic etching, we obtained nanowires of 0.5-2 mu m in length and diameter in range of 50-100 nm. The diameter of silver nanoparticles was in the range of 20-50 nm. The reflection coefficient of light in wide spectral range was less than 1%. Reflection spectra peaked at the wavelength of 850 nm that points out on the influence of Ag nanoparticles.
引用
收藏
页码:769 / 774
页数:6
相关论文
共 23 条
  • [1] Interference Effects in the Electroreflectance and Electroluminescence Spectra of InGaN/AlGaN/GaN Light-Emitting-Diode Heterostructures
    Avakyants, L. P.
    Bokov, P. Yu.
    Chervyakov, A. V.
    Chuyas, A. V.
    Yunovich, A. E.
    Vasileva, E. D.
    Bauman, D. A.
    Uelin, V. V.
    Yavich, B. S.
    [J]. SEMICONDUCTORS, 2010, 44 (08) : 1090 - 1095
  • [2] Plasmon-Enhanced Silicon Nanowire Array-Based Hybrid Heterojunction Solar Cells
    Banerjee, Debika
    Guo, Xiaohang
    Cloutier, Sylvain G.
    [J]. SOLAR RRL, 2018, 2 (07):
  • [3] III-V-on-silicon solar cells reaching 33% photoconversion efficiency in two-terminal configuration
    Cariou, Romain
    Benick, Jan
    Feldmann, Frank
    Hohn, Oliver
    Hauser, Hubert
    Beutel, Paul
    Razek, Nasser
    Wimplinger, Markus
    Blasi, Benedikt
    Lackner, David
    Hermle, Martin
    Siefer, Gerald
    Glunz, Stefan W.
    Bett, Andreas W.
    Dimroth, Frank
    [J]. NATURE ENERGY, 2018, 3 (04): : 326 - 333
  • [4] GaAs Core-Shell Nanowires for Photovoltaic Applications
    Czaban, Josef A.
    Thompson, David A.
    LaPierre, Ray R.
    [J]. NANO LETTERS, 2009, 9 (01) : 148 - 154
  • [5] Light Trapping in Silicon Nanowire Solar Cells
    Garnett, Erik
    Yang, Peidong
    [J]. NANO LETTERS, 2010, 10 (03) : 1082 - 1087
  • [6] Multifunctional Ag nanoparticle decorated Si nanowires for sensing, photocatalysis and light emission applications
    Ghosh, Ramesh
    Ghosh, Joydip
    Das, Ruma
    Mawlong, Larionette P. L.
    Paul, Kamal Kumar
    Giri, P. K.
    [J]. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2018, 532 : 464 - 473
  • [7] Metal-assisted chemical etching of silicon and nanotechnology applications
    Han, Hee
    Huang, Zhipeng
    Lee, Woo
    [J]. NANO TODAY, 2014, 9 (03) : 271 - 304
  • [8] Application of Silicon Nanostructure Arrays for 6-inch Mono and Multi-Crystalline Solar Cell
    Hsueh, Chen-Chih
    Thiyagu, Subramani
    Liu, Chien-Ting
    Syu, Hong-Jhang
    Yang, Song-Ting
    Lin, Ching-Fuh
    [J]. NANOSCALE RESEARCH LETTERS, 2019, 14 (1):
  • [9] Single and Tandem Axial p-i-n Nanowire Photovoltaic Devices
    Kempa, Thomas J.
    Tian, Bozhi
    Kim, Dong Rip
    Hu, Jinsong
    Zheng, Xiaolin
    Lieber, Charles M.
    [J]. NANO LETTERS, 2008, 8 (10) : 3456 - 3460
  • [10] Uniform p-type doping of silicon nanowires synthesized via vapor-liquid-solid growth with silicon tetrachloride
    Kendrick, Chito
    Kuo, Meng-Wei
    Li, Jie
    Shen, Haoting
    Mayer, Theresa S.
    Redwing, Joan M.
    [J]. JOURNAL OF APPLIED PHYSICS, 2017, 122 (23)