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The excimer emission spectra of both polymers were very similar at room temperature, whereas at low temperatures a large difference between the emission intensities was observed due to the full-overlap excimer formation of P2VPy.
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The partition equilibrium for carvacrol in the complex film largely favors (10,000-fold) the EVOH layer in dry conditions, although in humid conditions the solubility in both polymers is very close (4-fold).
The sulfonated polymers were very soluble in common organic solvents, such as dimethyl sulfoxide, N,N′-dimethylacetamide, dimethylformamide, and can be readily cast into tough and smooth films.
Oxidized polymers were very effective in activating dendritic cells and inducing secretion of pro-inflammatory cytokines.
The study of the feasibility of using crude glycerol for PHB production, with Paracoccus denitrificans and Cupriavidus necator JMP 134, showed that the resulting polymers were very similar to those obtained from glucose.
One potential problem is that oil-based polymers are very good at what they do.
Tribology of polymers is very interesting area of research.
The adhesion of metal coating on polymers is very strong.
Opportunities in biobased chemicals and polymers are very promising [2],[3].
Crystalline polymers are very interesting and useful materials with great versatility through their potential morphology control.
Even for metastable aggregates the asymmetric distribution of polymers is very large.
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