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首页> 外文期刊>Hemijska industrija >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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Impact of the poly(propylene oxide)-b-poly(dimethylsiloxane)-b-poly(propylene oxide) macrodiols on the surface related properties of polyurethane copolymers

机译:聚环氧丙烷-b-聚二甲基硅氧烷-b-聚环氧丙烷大二醇对聚氨酯共聚物表面相关性能的影响

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摘要

Segmented thermoplastic polyurethane copolymers (PURs) were synthesized using 4,4'-methylenediphenyl diisocyanate and 1,4-butanediol as the hard segment and α,ω-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. [Projekat Ministarstva nauke Republike Srbije, br. 172062]
机译:使用4,4'-亚甲基二苯基二异氰酸酯和1,4-丁二醇作为硬链段以及α,ω-二羟基-聚环氧丙烷-b-聚二甲基硅氧烷-b-poly合成链状热塑性聚氨酯共聚物(PUR) (环氧丙烷)(PPO-PDMS)作为软链段。在PUR中掺入的软链段的含量在40至90重量%的范围内变化。分别通过FTIR,1H,2D NMR光谱,GPC和DSC分析监测所得共聚物的结构,分子量和结晶度。表面自由能分析表明表面上存在疏水性(硅氧烷)基团,从而使所得的PURs膜具有高度疏水性。吸水率测量结果表明,疏水性PPO-PDMS链段含量的增加,导致共聚物中吸水率的降低。 SEM和AFM分析表明,PPO-PDMS链段含量较低的共聚物在链段之间具有较高的微相分离。在这项工作中获得的结果表明,基于PPO-PDMS的合成PURs表现出适当的表面和形态学特性,具有广阔的潜力,可用于生物医学中的疏水涂层等各种应用。 [Projekat Ministarstva nauke Republike Srbije,br。 172062]

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