2013
DOI: 10.1007/s10973-012-2903-4
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Effect of different polyethers on surface and thermal properties of poly(urethane-siloxane) copolymers modified with side-chain siloxane

Abstract: Poly(urethane-dimethylsiloxane) (PU-PDMS) copolymers with 4,4 0 -methylenebis(cyclohexyl isocyanate), different polyethers i.e., poly(oxytetramethylene)diol, poly (ethylene glycol), poly(propylene glycol), and a,x-dihydroxy terminated polydimethylsiloxane extended with 1,4-butanediol in two-step solution polymerization were obtained. The PU-PDMS were modified using 1.25 mol% of polydimethylsiloxane which was incorporated into main polyurethane backbone as a side chain. The structure of the synthesized PU-PDMS … Show more

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Cited by 21 publications
(12 citation statements)
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References 41 publications
(49 reference statements)
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“…The results revealed that surface free energy of the copolymers decreased with increasing PDMS content in the TPUS-HPs, due to the surface activity of hydrophobic PDMS incorporated into the soft segment. The surface energy values of synthesized TPUS-HPs samples (ranging from 25.4 to 35.0 mJ/m 2 ) were slightly higher than values obtained for the siloxane-urethanes presented in the literature (approximately 20 mJ/m 2 ) 46,47 and silicone control sample (18 mJ/ m 2 ), 47 most likely because PDMS covers only part of the TPU surface. The obtained results confirmed the presence of the both hydrophobic siloxane and hydrophilic urethane groups at the surface, giving slight amphiphilic nature to the surface of the synthesized TPUS-HPs.…”
Section: Discussioncontrasting
confidence: 60%
“…The results revealed that surface free energy of the copolymers decreased with increasing PDMS content in the TPUS-HPs, due to the surface activity of hydrophobic PDMS incorporated into the soft segment. The surface energy values of synthesized TPUS-HPs samples (ranging from 25.4 to 35.0 mJ/m 2 ) were slightly higher than values obtained for the siloxane-urethanes presented in the literature (approximately 20 mJ/m 2 ) 46,47 and silicone control sample (18 mJ/ m 2 ), 47 most likely because PDMS covers only part of the TPU surface. The obtained results confirmed the presence of the both hydrophobic siloxane and hydrophilic urethane groups at the surface, giving slight amphiphilic nature to the surface of the synthesized TPUS-HPs.…”
Section: Discussioncontrasting
confidence: 60%
“…PU-Si materials combine advantages of both homopolymers, i.e., good tensile strength and abrasion resistance which are specific for polyurethane, with low free surface energy and glass transition, great elasticity (especially at low temperature) as well as good thermal, chemical and biological stability which are due to polysiloxanes. Owing to their properties, PU-Si are widely used as protection coatings, membranes or medical implants [1][2][3][4][5].…”
Section: Introductionmentioning
confidence: 99%
“…However, the investigations on polyurethanes with other siloxane structures including polydimethylsiloxane chains terminated only at one side with two hydroxyl groups [5] or polyhedral oligomeric silsesquioxane (POSS) [8] have been recently developed. The thermal degradation studies were also carried out for poly (urethane-siloxane) networks obtained by sol-gel process [9], by cross-linking with hyperbranched polyester [10], or by moisture curing [11].…”
Section: Introductionmentioning
confidence: 99%
“…The methylene protons adjacent to oxygen in urethanes (a′) are observed at δ = 3.99 ppm which has high intensity for 50 wt % RS content. The doublet at δ = 4.70–4.75 ppm is assigned to protons in the amino group of urethanes (g), although it may also appear at higher values . The methylene protons adjacent to the ether group (a) in the flexible segment are represented as a triplet in δ = 3.35 ppm.…”
Section: Resultsmentioning
confidence: 99%