2012
DOI: 10.4028/www.scientific.net/amr.486.140
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Increase of the Power of Solar Elements Based on Nanoparticles of Nickel Oxides Synthesized in Flame

Abstract: The present work is devoted to studying photoelectrical properties of the solar cells covered with nickel oxide nanoparticles synthesized in counter flow propane flame. In the given case, the nanoparticles of oxides play the role of quantum points on the surface of the solar cells and promotes effective absorption of light energy. The applying of silicon solar cells of nickel oxide nanoparticles to the surface caused the increase of output open circuit voltage of 4-7 %, the increase of short - circuit current … Show more

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Cited by 2 publications
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“…layers (α = 0 °, IG/I2D = 1,3); b -two layers (α= 30 °, IG/I2D = 1,1); c -five layers (α = 45 °, IG/I2D = 1,7) Figure 3 Raman spectra of graphene layers synthesized on nickel substrate in propane-oxygenargon flame (C / O = 0,86; t = 917oS; τ = 5 min)Increase of the power of solar cells coating by nanoparticles of nickel oxides synthesized in flames[14] …”
mentioning
confidence: 99%
“…layers (α = 0 °, IG/I2D = 1,3); b -two layers (α= 30 °, IG/I2D = 1,1); c -five layers (α = 45 °, IG/I2D = 1,7) Figure 3 Raman spectra of graphene layers synthesized on nickel substrate in propane-oxygenargon flame (C / O = 0,86; t = 917oS; τ = 5 min)Increase of the power of solar cells coating by nanoparticles of nickel oxides synthesized in flames[14] …”
mentioning
confidence: 99%