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From a detailed study of the syntheses and physical properties of semicrystalline poly[aryl ether ketone-co-sulfone)] modether ketone-co-sulfoner lether ketone-co-sulfonetanding of the chemistry of the polymer synthesis and of its thermal behaviour.
spectrum of the polymer shows extra lines relative to those of soluble model compounds; this is probably due to a slow ring inversion of the 1,3-dioxane rings in the solid polymer.
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Due to the small size of the model compound, this effect does not impact its observed conversion since premature termination still affords a quantifiable low molecular weight product.
A five pharmacologically significant (1Z, 2E -N-arylpropanehydrazonoyl chlorides (3a-e) were chosen as model compounds for this study.
Five parabens (methyl, ethyl, propyl, butyl and benzyl) present in water matrices were used as model compounds for this evaluation.
Addition of sugar model compounds reversed this effect, so that formation of 2 was suppressed and exclusively 1 was found, indicating a strong interaction between the latter conformer and the carbohydrate.
UV filters were used as model compounds in this work due to their potential endocrine and developmental toxicities, including benzhydrol, 2-ethylhexyl salicylate, homosalate, 2-hydroxy-4-methoxybenzophenone, 3-(4′-methylbenzylidene) camphor and benzophenone.
The model compounds used in this study are indicated in bold.
This is a likely indication that important species were missing from the library of model compounds used in this study.
Semi-empirical calculations of the charge distribution over the atoms in the model compounds show that this parameter is important to decide the reaction mechanisms.
Therefore, computational chemistry is thus necessary to get insight into the molecular structure, although according to our best knowledge no evidence of similar study for the dicyanovinyl effect on the ICT character of the model compounds selected in this study.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com