Vertically segregated hybrid blends for photovoltaic devices with improved efficiency
Journal of Applied Physics 97:1 (2005)
Abstract:
Solution-processed photovoltaic devices based on blends of conjugated polymers and inorganic semiconductor tetrapods show high efficiencies due to the good electron transport perpendicular to the plane of the film. Here, we show that by using a high-boiling-point solvent, 1,2,4-trichlorobenzene, instead of chloroform for spin-coating, we can typically obtain a threefold increase in solar power conversion efficiency in devices based on CdSe tetrapods and the poly (p -phenylenvinylene) derivative O C1 C10 -PPV. The optimized devices show AM1.5 solar power conversion efficiencies of typically 2.1% with some devices as high as 2.8%. The results can be explained by the occurrence of vertical phase separation which leads to an optimal structure for charge collection. Evidence for this structure is obtained by environmental scanning electron microscopy, photocurrent action spectra measurements, time-resolved photoluminescence, and spectroscopic measurements of exciton dissociation and charge-carrier recombination. 漏 2005 American Institute of Physics.Nanostructured polymers in polymeric optoelectronic devices.
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 229 (2005) U1156-U1156
PEG-Supported Synthesis of 3,5-Disubstituted 1,2,4-Triazoles
Synlett Georg Thieme Verlag KG (2005) 1135-1136
Photovoltaic devices fabricated from an aqueous dispersion of polyfluorene nanoparticles using an electroplating method
SYNTHETIC MET 147:1-3 (2004) 105-109
Abstract:
We report microscopic and device based analysis of thin films of polyfluorene nanoparticles. We use an electroplating technique to form a complete monolayer of polymer nanoparticles on conductive and polymer-coated substrates. We find the electroplated film to be insoluble in organic solvents, and thus are able to build up multilayer structures of electroactive polymers which are originally soluble in common solvents. By spin-coating an F8BT layer from an organic solvent on top of a PFB:F8BT nanoparticle film, we form a multilayer structure. Capping with an aluminium cathode produces a photovoltaic device with substantial performance characteristics. (C) 2004 Elsevier B.V. All rights reserved.The origin of collected charge and open-circuit voltage in blended polyfluorene photovoltaic devices
Advanced Materials 16:18 (2004) 1640-1645