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The modified blends show very high dielectric constant value (105 107) as a function of frequency (in the range 50 Hz–35 MHz) and temperature in the range (40 150 °C).
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Morphology of unmodified blends showed coarse dispersion, whereas that of the modified blends showed fine and lamellar dispersion.
The modified blends were characterized by X-ray diffraction, Thermogravimetric analysis, and Scanning electron microscopy.
Complete lack of female response to hexane control further supported female recognition of the modified blends.
When blends compared to pure UHMWPE, the blends show lowered tensile modulus and lowered mixing energies.
However, blends show a higher degradation temperature than NR.
The blends showed macrophase separated grains, in which the structures resembled the microphase morphology of none of the blend components.
A strong exciton quenching was observed in all blends, with PPV PCBM blends showing the fastest initial quenching of the PPV exciton.
When compared to pure MDMO-PPV, all annealed and nonannealed blends showed accelerated decay kinetics.
These values indicated that all the powder blends showed good flow property.
NO x concentration in all blends shows higher values compared to diesel fuel.
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CEO of Professional Science Editing for Scientists @ prosciediting.com