About: Surface Roughness Characterization of ZnO:TiO2-Organic Blended Solar Cells Layers by Atomic Force Microscopy and Fractal Analysis     Goto   Sponge   NotDistinct   Permalink

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  • The objective of this work is to quantitatively characterize the 3D complexity of ZnO:TiO2- organic blended solar cells layers by atomic force microscopy and fractal analysis. ZnO:TiO2- organic blended solar cells layers were investigated by AFM in tapping-mode in air, on square areas of 25 mým2. A detailed methodology for ZnO:TiO2-organic blended solar cells layers surface fractal characterization, which may be applied for AFM data, is presented. Detailed surface characterization of the surface topography was obtained using statistical parameters, according with ISO 25178-2: 2012. The fractal dimensions Df values (all with average_standard deviation), obtained with morphological envelopes method, for: blend D1 (P3HT:PCBM:ZnO:TiO2 blend with ratio 1:0.35:0.175:0.175 mg in 1ml of Chlorobenzene) is Df Ľ 2:55 _ 0:01; and for blend D2 (P3HT:PCBM:ZnO:TiO2 blend with ratio 1:0.55:0.075:0.075 mg in 1ml of Chlorobenzene) is Df Ľ 2:45 _ 0:01. Denoting the ratios in 1ml of Chlorobenzene with D1 and D2 articles. The 3D surface roughness of samples revealed a fractal structure at nanometer scale. Fractal and AFM analysis may assist manufacturers in developing ZnO:TiO2-organic blended
  • The objective of this work is to quantitatively characterize the 3D complexity of ZnO:TiO2- organic blended solar cells layers by atomic force microscopy and fractal analysis. ZnO:TiO2- organic blended solar cells layers were investigated by AFM in tapping-mode in air, on square areas of 25 mým2. A detailed methodology for ZnO:TiO2-organic blended solar cells layers surface fractal characterization, which may be applied for AFM data, is presented. Detailed surface characterization of the surface topography was obtained using statistical parameters, according with ISO 25178-2: 2012. The fractal dimensions Df values (all with average_standard deviation), obtained with morphological envelopes method, for: blend D1 (P3HT:PCBM:ZnO:TiO2 blend with ratio 1:0.35:0.175:0.175 mg in 1ml of Chlorobenzene) is Df Ľ 2:55 _ 0:01; and for blend D2 (P3HT:PCBM:ZnO:TiO2 blend with ratio 1:0.55:0.075:0.075 mg in 1ml of Chlorobenzene) is Df Ľ 2:45 _ 0:01. Denoting the ratios in 1ml of Chlorobenzene with D1 and D2 articles. The 3D surface roughness of samples revealed a fractal structure at nanometer scale. Fractal and AFM analysis may assist manufacturers in developing ZnO:TiO2-organic blended (en)
Title
  • Surface Roughness Characterization of ZnO:TiO2-Organic Blended Solar Cells Layers by Atomic Force Microscopy and Fractal Analysis
  • Surface Roughness Characterization of ZnO:TiO2-Organic Blended Solar Cells Layers by Atomic Force Microscopy and Fractal Analysis (en)
skos:prefLabel
  • Surface Roughness Characterization of ZnO:TiO2-Organic Blended Solar Cells Layers by Atomic Force Microscopy and Fractal Analysis
  • Surface Roughness Characterization of ZnO:TiO2-Organic Blended Solar Cells Layers by Atomic Force Microscopy and Fractal Analysis (en)
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  • RIV/00216275:25310/14:39898940!RIV15-TA0-25310___
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  • P(EE2.3.30.0021), P(TE01020022)
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  • 03
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  • 48657
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  • RIV/00216275:25310/14:39898940
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  • surface roughness; organic blended solar cell; fractal dimension; fractal anaylsis; Atomic force microscopy (en)
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  • SG - Singapurská republika
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  • [0662A3103505]
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  • International Journal of Nanoscience
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  • 13
http://linked.open...iv/tvurceVysledku
  • Wágner, Tomáš
  • Pathak, Dinesh
  • Nunzi, J. M.
  • Ikram, M.
  • Stach, S.
  • Ţălu, Ş.
issn
  • 0219-581X
number of pages
http://bibframe.org/vocab/doi
  • 10.1142/S0219581X14500203
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  • 25310
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