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Impact of the poly(propylene oxide)-b-poly(dimethylsiloxane)-b-poly(propylene oxide) macrodiols on the surface related properties of polyurethane copolymers
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Segmented thermoplastic polyurethane copolymers (PURs) were synthesized using
4,4'-methylenediphenyl diisocyanate and 1,4-butanediol as the hard segment
and ?,?-dihydroxy-poly(propylene
oxide)-b-poly(dimethylsiloxane)-b-poly(propylene oxide) (PPO-PDMS) as the
soft segment. The content of incorporated soft segments in PURs varied in the
range from 40 to 90 wt.%. The structure, molecular weights and crystallinity
of obtained copolymers were monitored by FTIR, 1H, 2D NMR spectroscopy, GPC
and DSC analysis, respectively. Surface free energy analysis indicates the
presence of hydrophobic (siloxane) groups on the surface, giving highly
hydrophobic nature to the obtained PURs films. Water absorption measurements
showed that the increase of the hydrophobic PPO-PDMS segment content, led to
the decrease of percentage of absorbed water in copolymers. SEM and AFM
analysis revealed that copolymers with lower content of PPO-PDMS segments
have higher microphase separation between segments. The results obtained in
this work indicate that synthesized PURs based on PPO-PDMS, demonstrated
proper surface and morphological properties with a great potential for
variety of applications such as hydrophobic coatings in biomedicine.
National Library of Serbia
Title: Impact of the poly(propylene oxide)-b-poly(dimethylsiloxane)-b-poly(propylene oxide) macrodiols on the surface related properties of polyurethane copolymers
Description:
Segmented thermoplastic polyurethane copolymers (PURs) were synthesized using
4,4'-methylenediphenyl diisocyanate and 1,4-butanediol as the hard segment
and ?,?-dihydroxy-poly(propylene
oxide)-b-poly(dimethylsiloxane)-b-poly(propylene oxide) (PPO-PDMS) as the
soft segment.
The content of incorporated soft segments in PURs varied in the
range from 40 to 90 wt.
%.
The structure, molecular weights and crystallinity
of obtained copolymers were monitored by FTIR, 1H, 2D NMR spectroscopy, GPC
and DSC analysis, respectively.
Surface free energy analysis indicates the
presence of hydrophobic (siloxane) groups on the surface, giving highly
hydrophobic nature to the obtained PURs films.
Water absorption measurements
showed that the increase of the hydrophobic PPO-PDMS segment content, led to
the decrease of percentage of absorbed water in copolymers.
SEM and AFM
analysis revealed that copolymers with lower content of PPO-PDMS segments
have higher microphase separation between segments.
The results obtained in
this work indicate that synthesized PURs based on PPO-PDMS, demonstrated
proper surface and morphological properties with a great potential for
variety of applications such as hydrophobic coatings in biomedicine.
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