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The rheological characteristics which have been here determined indicate that in the formulations containing both the organic solvent and PEO it is possible to control at the same time the stiffness of the gel, which has relevance for the easiness of application, and the response to external solicitation, which affects the shape stability and the removability of the gels.
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Although it is such a low amount of PEO that it cannot form any crystals, the PEO block undergoes some structural change in the cooling process.
Contrariwise, epoxy polymer DEG has a higher heat resistance comparing to PEO, thus it is of interest as a solid polymer electrolyte able to operate at high temperatures.
Although the as-received pigment is oxygen deficient, similar to Cr2O2.4 in crystal structure, the oxidative plasma of PEO converts it into stoichiometric Cr2O3.
In addition to block copolymer morphology playing a major role in PEO crystallinity, it has a significant effect on water diffusion in the amorphous polymers and is of practical importance as investigations at elevated temperature are not possible with homopolymer PEO.
spectra, single resonances for PEO-CD-IC, which compared with the multiple resonances observed for each carbon type in α-cyclodextrin, may indicate that α-cyclodextrin adopts a more symmetrical cyclic conformation in the PEO-CD-IC sample, while pure α-cyclodextrin assumes a less symmetrical conformation in the crystal when it does not include a guest polymer PEO inside its cavity.
The degree of chain orientation was markedly higher in the 20 1 film than in the pure PEO film; however it was difficult to calculate the degree of orientation in the 10 1 film.
Exposure to the physiological environment increased Ca/P ratio of the single PEO coating and decreased it for the duplex HA-PEO coating.
In the ternary electrolyte containing PEO, QO and pAPS, it is observed that the lithium ions can competively interact with the two polymers.
A methodology is developed for plasma electrolytic oxidation (PEO) of aluminium; however, it can be applied to any plasma electrolytic process.
Since PEO is highly soluble in water[29], it is of practical interest to study the integrity of the nanofibrous structure in water.
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