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MWCNT/PAI composite films have been prepared by casting a solution of precursor polymer containing MWCNTs into a thin film and its tensile properties examined.
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In this study, we cultured NSCs derived from the cerebral cortex of embryonic day-14 mice on honeycomb (HC) films with highly regular pores prepared by casting a polymer solution of water-immiscible solvent under high humidity.
The porous film was prepared directly by casting a THF solution of the hyperbranched copolymer on a cover glass.
The drug-loaded core film was produced by casting a hydroalcoholic solution of hydroxyl propyl methyl cellulose (HPMC) (5% w/v) and glycerin (40% w/w).
Microscopic observation under crossed nicols conditions revealed that spherulite was formed on a film of this copolymer prepared by casting a xylene solution on a glass plate.
Self-assembly of nano-sized arrays by casting a dilute solution of a guest material on the friction-transferred poly tetrafluoroethylene) (FT-PTFE) substrate was newly discovered.
The membranes were formed by casting a polymer solution in the inter-pillar space of these templates and evaporating the solvent.
A new functional amphiphilic polymer (AP) containing ruthenium tris bipyridyl) photosensitizer was synthesized and a honeycomb-patterned film was fabricated by casting a polystyrene solution and different concentrations of AP under humid conditions.
Block type polymer electrolyte membranes (PEMs) were prepared by casting an aqueous solution of a block copolymer, poly vinyl alcohol-b-styrene sulfonic acid) (PVA-b-PSSA), and by cross-linking the PVA chains with glutaraldehyde (GA) solution at various GA concentrations to investigate the effect of the cross-linking conditions on the properties of the block-type PEMs.
The substrates consisted of flat and patterned PLA films fabricated by casting a chloroform-PLA solution on a glass surface.
Samples for scanning transmission electron microscopy (STEM) measurements were prepared by casting a drop of solution on TEM grid and drying it in ambient air.
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