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Development of sol-gel derived gahnite anti-reflection coating for augmenting the power conversion efficiency of polycrystalline silicon solar cells

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The present research is focused on developing ZnAl2O4 (gahnite) spinel as an antireflection coating material for enhanced energy conversion of polycrystalline silicon solar cells (PSSC). ZnAl2O4 has been synthesized using dual precursors, namely aluminum nitrate nonahydrate and zinc nitrate hexahydrate in ethanol media. Diethanolamine has been used as a sol stabilizer in sol-gel process for ZnAl2O4 nanosheet fabrication. nanosheet was deposited layer-by-layer (LBL) on PSSC by spin coating method. The effect of ZnAl2O4 coating on the physical, electrical, optical properties and temperature distribution in PSSC was investigated. The synthesized antireflection coating (ARC) material bears gahnite (ZnAl2O4) spinel crystal structure composed of two dimensional (2D) nanosheets. An increase in layer thickness proves the LBL deposition of ARC on the PSSC substrate. The ZnAl2O4 2D nanosheet comprising ARC on the PSSC was tested and it exhibited a maximum of 93 % transmittance, short-circuit photocurrent of 42.364 mA/cm2 and maximum power conversion efficiency (PCE) 23.42 % at a low cell temperature (50.2 °C) for three-layer ARC, while the reference cell exhibited 33.518 mA/cm2, 15.74 % and 59.1 °C, respectively. Based on the results, ZnAl2O4 2D nanosheets have been proven as an appropriate ARC material for increasing the PCE of PSSC.
Wydawca
Rocznik
Strony
465--472
Opis fizyczny
Bibliogr. 32 poz., tab., rys.
Twórcy
  • Kongu Engineering College, Perundurai, Tamil Nadu, 638060, India
  • Kongu Engineering College, Perundurai, Tamil Nadu, 638060, India
  • Bharathiar University Arts and Science College, Modakurichi, Tamil Nadu, 638104, India
  • Kongunadu College of Engineering and Technology, Trichy, Tamil Nadu, 621215, India
  • Kongu Engineering College, Perundurai, Tamil Nadu, 638060, India
  • Kongu Engineering College, Perundurai, Tamil Nadu, 638060, India
Bibliografia
  • [1] KATHIRVEL K., RAJASEKAR R., SHANMUHARAJAN T., PAL S.K., SATHISH KUMAR P., SARAVANA KUMAR J., Mater. Sci.-Poland., 35 (2017), 181.
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  • [3] LIEN S.Y., WUU D.S., YEH W.C., LIU J.C., Sol. Energ. Mat. Sol. C., 90 (2006), 2710.
  • [4] SHARMA R., AMIT G., AJIT V., J. Nano- Electron. Phys., 9(2017), 1.
  • [5] AL-GHAMDI A.A., AL-HARTOMY O.A., OKR M.E., NAWAR A.M., GAZZAR S.E., TANTAWY F.E., YAKUPHANOGLU F., Spectrochim. Acta A, 131 (2014), 512.
  • [6] VERMA A., KHAN F., KUMAR D., KAR M., CHAKRAVARTY B.C., SINGH S.N., HUSAIN M., Thin Solid Films, 518 (2010), 2649.
  • [7] BALAPRAKASH V., GOWRISANKAR P., SUDHA S., RAJKUMAR R., Mater Technol., 33 (2018), 420.
  • [8] SHAHID M.U., DEEN K.M., AHMAD A., AKRAM M.A., ASLAM M., AKHTAR W., Appl. Nanosci., 6 (2016), 235.
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  • [17] MUSAT V., TEIXEIRA B., FORTUNATO E., MONTEIRO R.C.C., VILARINHO P., Surf. Coat. Tech., 180 (2004), 659.
  • [18] VERMA A., VIJAYAN N., J. Mater. Res., 28 (2013), 2990.
  • [19] BOUKHENOUFA N., MAHAMDI R., RECHEM D., J. Semicond., 37 (2016), 113001.
  • [20] RAVICHANDRAN K., JABENA BEGUM N., SNEGA S., SAKTHIVEL B., Mater. Manuf. Process., 31 (2016), 1411.
  • [21] CHEN D., Sol. Energ. Mat. Sol. C., 68 (2001), 313.
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  • [23] SILVA A.A.D., SOUZA GONCALVES A.D., DAVOLOS M.R., J. Sol-Gel Sci. Techn., 49 (2009), 101.
  • [24] WEI X., CHEN D., Mater. Lett., 60 (2006), 823.
  • [25] AMIN P.O., KADHIM A.J., AMEEN M.A., ABDULWAHID R.T., J. Mater. Sci-Mater. El., 29 (2018), 16010.
  • [26] HABUBI N.F., ISMAIL R.A., MISHJIL K.A, HASSOON K.I., Silicon, (2018), 1-6.
  • [27] TAHERNIYA A., RAOUFI D., Mater. Res. Express., 6 (2018), 016417.
  • [28] KESMEZ O., AKARSU E., CAMURLU H.E., YAVUZ E., AKARSU M., ARPAC E., Ceram. Int., 44 (2018), 3183- 3188.
  • [29] JUNG J., JANNAT A, AKHTAR M.S., YANG O., J. Nanosci. Nanotechnol., 18 (2018), 1274-1278.
  • [30] RADZIEMSKA E., Renew. Energ., 28 (2003), 1.
  • [31] DUBEY S., SARVAIYA J.N., SESHADRI B., Energy Procedia, 33 (2013), 311.
  • [32] KUMAR J, NEGI V.S., CHATTOPADHYAY K.D., SAREPAKA R.V., SINHA R.K., Measurement, 102 (2017) 96.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-73f708fe-1288-4d3f-aa0b-11e169c9abfb
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