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Nanocomposites based on blends of polypropylene and elastomer and using an organoclay masterbatch were prepared in a twin-screw extruder.
We develop a universal method for spray-deposition of polymeric semiconductor blends, based on blends of polyfluorenes (F8TBT), polythiophenes (P3HT) and fullerenes (PCBM), as suitable for large areas.
The rheology of binders based on blends of powdery oligoimides with liquid epoxy and acrylic oligomers was studied for a broad interval of concentrations, temperatures and shear rates.
In the present study we report the preparation, characterization and cytocompatibility of novel polymeric systems based on blends of chitosan and poly vinyl alcohol) (PVA) and chemically crosslinked by glutaraldehyde for biomedical applications.
Composite membranes based on blends of sulfonated fluorinated poly arylene ether) (SFPAE) and poly vinylidene fluoride-co-hexafluoropropene) (P VDF-co-HFP)) were P VDF-co-HFPh varying P VDF-co-HFP) content for vanadium redox flowerettery (VRFB) apreparedons.
We report on studies of device degradation in organic photovoltaic devices based on blends of poly 3-hexylthiophene) (poly 3-hexylthiophenel C61-butyric acid methyl ester (P3HT).
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Huang, J. et al. Printable and flexible phototransistors based on blend of organic semiconductor and biopolymer.
In comparison with the photovoltaic properties of the blends of Cu2S or In2S3nanocrystals alone and MEH-PPV, the power conversion efficiency of the hybrid device based on blend of Cu2S In2S3and MEH-PPV is enhanced by ~3 5 times.
In this case, in addition to the conventional loading method of sorption from a concentrated drug solution, an alternative method of drug loading based on blending or milling of the drug and porous crospovidone particles in the absence of solvent under high mechanical shear for an extended period of time has been proposed.
The approach was based on blending PVDF with library of amphiphilic random copolymers containing a common hydrophobic polymer component which is compatible with PVDF.
Other researchers have developed nanofiber scaffolds based on PCL, blends of collagen and elastin (Li et al. 2005), or blends of PLGA and elastin (Li et al. 2006a), but none have reported the combination of PCL and elastin for application in peripheral nerve regeneration.
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