The phase diagram of poly(4-vinylphenol)−N,N-dimethyloctadecylamine (PVPh−NDOA)
mixture is investigated by X-ray diffraction measurements and optical microscopy. In the low-temperature
region PVPh−NDOA mixtures take the mesoscopically ordered phase like a comb-shaped polymer above
the melting temperature of the crystal of PVPh−NDOA aggregates. With elevating temperature PVPh−NDOA mixtures undergo an order−disorder phase transition that is a characteristic phase transition in
block- or comb-shaped polymers and take homogeneous single phase. Furthermore, at higher temperatures
PVPh−NDOA mixtures show the LCST-type phase transition and macroscopically separate into two
homogeneous phases. These complex phase behavior in the PVPh−NDOA mixture is explained in relation
to the balances of association between the hydroxyphenyl group of PVPh and the dimethylamino group
of NDOA, repulsion between PVPh and the octadecyl group of NDOA, and the variation of the entropy
contribution with varying temperature.
ABSTRACT:The effect of siloxane chain length on surface segregation of poly(methyl methacrylate)-grafted poly(dimethyl siloxane) (PMMA-g-PDMS)/poly(2-ethylhexyl acrylate-co-acrylic acid-co-vinyl acetate) [P(2EHA-AA-VAc)] blends was investigated. The blends of PMMA-g-PDMS with P(2EHA-AA-VAc) showed surface segregations of PDMS components. The surface enrichments of PDMS in the blends depended significantly on the PDMS chain length. Also, this blend showed the gradient domain structure.
ABSTRACT:In immiscible blends of poly(2-ethylhexyl acrylate-ca-acrylic acid-ca-vinyl acetate) P(2EHA-AA-VAc) with poly(vinylidene fluoride-ca-hexafluoroacetone) P(VDF-HFA), depth profiling was carried out by PAS-FTIR and ATR-FTIR analyses. Integrated surface excesses of P(VDF-HFA) component (
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