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The ratio between acetone and DMAc was 5 6 (w:w) for the blend solution with a MWNT loading of 1.5% and 1 1 (w:w) for all other solutions.
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CS/SF blend solutions with different SF/CS weight ratio (75:250 50:50, and 25:75) were prepared in the same solvent system at 12, 10, and 9 wt.% (combined weight of CS and SF), respectively.
Smooth fibers were spun from the CA and MWNT/CA blend solutions with a loading below 1%.
The completely thermoreversible behaviors of micellization and gelation were observed for all the blend solutions with two F127 concentrations (10 and 15 wt%) and various 25R4/F127 molar ratios (0 4) even though the pure 25R4 solution itself was not thermoreversible.
Blends with different component pairs were prepared by blending solutions.
On top of the zeolite Y layer, a selective polymer layer was deposited with the blend solution of Pebax® and ethylene oxide (EO -containing small molEO -containing
The blend solutions of MC/PVA with different weight ratio of MC to PVA were prepared using water as solvent to fabricate nanofibers.
The grafted latex particles were blended in solution with linear polyisoprene (Mn = 3.95 × 105, 395 K).
PEGDA/PVdF/PMMA(E/V/M -coated E/V/M -coatedshowelectrolyteser liquid electrolyte uptaking and retention than PEGDA/PP composhowedlectrolyte because viscous ternary blend solution was much compatibetterth eliquidlytelectrolyte
We succeeded in producing SS/SF blend nanofibers by electrospinning with a SS/SF TFA blend solution.
We report the formation of non-woven fibers without bead defects by electrospinning blend solutions of chitosan and polyacrylamide (PAAm) with blend ratios varying from 75 wt% to 90 wt% chitosan using a modified electrospinning unit wherein polymer solutions can be spun at temperatures greater than ambient up to 100 °C.
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