Applied Physics Letters · 2006 · 44 citations · 26 references
Materials ScienceElectrical EngineeringEngineeringEasy Exciton SplittingSemiconducting PolymerOrganic ElectronicsNanoelectronicsOrganic Solar CellOrganic SemiconductorPhotovoltaic ResponseConjugated PolymerDwcn Incorporation YieldsHole Transport/N-si HeterojunctionChemistrySolar CellsPhotovoltaics
Poly(3-hexylthiophene)/n-Si heterojunction solar cells were studied with and without incorporation of double walled carbon nanotubes (DWCNs) in the polymer layer. Performance of the device improves by manyfold by incorporation of DWCN. The authors report power conversion efficiency, open circuit voltage, short-circuit current density, and fill factor of 0.026%, 0.446V, 0.3398mA∕cm2, and 0.17, respectively, for an unoptimized cell containing DWCN. Reference cells without DWCNs show much lower performance. DWCN incorporation yields better hole transport, easy exciton splitting, and suppression of charge recombination, thereby improving photovoltaic action. DWCN seems promising materials for improving hole transport in organic solar cells.
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Carbon Nanotube Doped Polyaniline
Hüseyin Zengin, Wei Zhou, Jianyong Jin et al. · Advanced Materials · 2002 · 662 citations
Gram-scale CCVD synthesis of double-walled carbon nanotubes
Emmanuel Flahaut, Revathi Bacsa, Alain Peigney et al. · Chemical Communications · 2003 · 387 citations