Plasmonic enhancement of light to improve the parameters of solar cells

被引:11
作者
Havryliuk, O. O. [1 ]
Evtukh, A. A. [2 ]
Pylypova, O. V. [3 ]
Semchuk, O. Yu. [1 ]
Ivanov, I. I. [3 ]
Zabolotnyi, V. F. [4 ]
机构
[1] Chuiko Inst Surface Chem NAS Ukraine, 17 Ganeral Naumova Str, UA-03164 Kiev, Ukraine
[2] Lashkaryov Inst Semicond Phys NAS Ukraine, 41 Pr Nauki, UA-03028 Kiev, Ukraine
[3] Taras Shevchenko Natl Univ Kyiv, Inst High Technol, 60 Volodymyrska Str, UA-01033 Kiev, Ukraine
[4] Vinnytsia Mykhailo Kotsiubynskyi State Pedag Univ, 32 Ostrozkoho Str, UA-21100 Vinnytsia, Ukraine
关键词
Optical spectra; Solar cells; Metal nanoparticles; Plasmon; Localized surface plasmon resonance; Finite-difference time-domain method; NANOPARTICLES; SURFACE; AU; SCATTERING; SIMULATION; RESONANCE;
D O I
10.1007/s13204-020-01299-w
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Surface plasmon resonance (SPR) can be generated in metal nanostructures such as gold, silver, copper and aluminium, which are promising materials in the fields of optoelectronics and plasmonics. The SPR in periodic arrays has aroused great interest because of its uniform optical properties which can be applied in integrated optoelectronics device, including solar cells (SC). The optical spectra of structures with Ag nanoparticles on the surface of Si wafer were calculated. The simulation was carried out using finite-difference time-domain method (FDTD). The FDTD method is a powerful numerical algorithm for the direct solution of Maxwell's equations. As a source of radiation, a plane wave with a range of wavelengths 300-1240 nm is used. The enhancement of solar light absorption of structures with Ag nanoparticles has been demonstrated. The Localized Surface Plasmon Resonance peaks have been obtained in the wavelength range of 830-865 nm that is in good agreement with experimentally revealed one. It was shown that the period of Ag nanoparticles replacement significantly influences on the spectra and LSPR peak position. The measurement of current-voltage characteristics of solar cells with and without Ag nanoparticles demonstrated significant enhancement of short current density in case of AgNPs on SCs surface.
引用
收藏
页码:4759 / 4766
页数:8
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共 30 条
  • [11] Plasmonic coupling in Au, Ag and Al nanosphere homo-dimers for sensing and SERS
    Katyal, Jyoti
    [J]. ADVANCED ELECTROMAGNETICS, 2018, 7 (02) : 83 - 90
  • [12] Localized Surface Plasmon Resonance and Refractive Index Sensitivity of Metal-Dielectric-Metal Multilayered Nanostructures
    Katyal, Jyoti
    Soni, R. K.
    [J]. PLASMONICS, 2014, 9 (05) : 1171 - 1181
  • [13] Size- and shape-dependent plasmonic properties of aluminum nanoparticles for nanosensing applications
    Katyal, Jyoti
    Soni, R. K.
    [J]. JOURNAL OF MODERN OPTICS, 2013, 60 (20) : 1717 - 1728
  • [14] Magneto-optical response of two-dimensional magnetic plasmon structures based on gold nanodisks embedded in a ferrite garnet layer
    Kolmychek, I. A.
    Shaimanov, A. N.
    Baryshev, A. V.
    Murzina, T. V.
    [J]. JETP LETTERS, 2015, 102 (01) : 46 - 50
  • [15] Surface-Plasmon-Resonance-Enhanced Photoelectrochemical Water Splitting from Au-Nanoparticle-Decorated 3D TiO2 Nanorod Architectures
    Li, Hongxia
    Li, Zhaodong
    Yu, Yanhao
    Ma, Yangjin
    Yang, Weiguang
    Wang, Fei
    Yin, Xin
    Wang, Xudong
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2017, 121 (22) : 12071 - 12079
  • [16] Photocurrent spectroscopy of optical absorption enhancement in silicon photodiodes via scattering from surface plasmon polaritons in gold nanoparticles
    Lim, S. H.
    Mar, W.
    Matheu, P.
    Derkacs, D.
    Yu, E. T.
    [J]. JOURNAL OF APPLIED PHYSICS, 2007, 101 (10)
  • [17] Electrodynamic Configurational Resonances in Nanocomposite Thin Films
    Lozovski, Valeri Z.
    Razumova, Margarita A.
    Vasiliev, Taras A.
    [J]. PLASMONICS, 2018, 13 (02) : 545 - 553
  • [18] Surface plasmon enhanced silicon solar cells
    Pillai, S.
    Catchpole, K. R.
    Trupke, T.
    Green, M. A.
    [J]. JOURNAL OF APPLIED PHYSICS, 2007, 101 (09)
  • [19] Electrical and optical properties of nanowires based solar cell with radial p-n junction
    Pylypova, O. V.
    Evtukh, A. A.
    Parfenyuk, P. V.
    Ivanov, I. I.
    Korobchuk, I. M.
    Havryliuk, O. O.
    Semchuk, O. Yu.
    [J]. OPTO-ELECTRONICS REVIEW, 2019, 27 (02) : 143 - 148
  • [20] Influence of Si nanowires on solar cell properties: effect of the temperature
    Pylypova, O. V.
    Evtukh, A. A.
    Parfenyuk, P. V.
    Korobchuk, I. M.
    Havryliuk, O. O.
    Semchuk, O. Yu.
    [J]. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2018, 124 (11):