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Structural characterization and mass transfer properties of polyurethane block copolymer: influence of mixed soft segment block and crystal melting temperature

机译:聚氨酯嵌段共聚物的结构表征和传质性能:混合软链段嵌段和晶体熔融温度的影响

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An attempt has been made to investigate the influence of mixed soft segment on structure and mass transfer properties of segmented polyurethane (SPU). For this purpose polyurethane block copolymer containing soft segment such as polycaprolactone glycol (number-average molecular weight 3000, PCL 3000), PCL 3000-polypropylene glycol (number-average molecular weight 3000, PPG 3000), PCL 3000-polytetramethylene glycol (number-average molecular weight 2900, PTMG 2900), PPG 3000-PTMG 2900, were synthesized using a two-step or three-step synthesis process. All the SPUs were modified with the hydrophilic segment, i.e. diol-terminated poly(ethylene oxide) (number-average molecular weight 3400, PEG 3400). Fourier-transform infrared, wide-angle X-ray diffraction, differential scanning calorimetry, and dynamic mechanical thermal analysis were used to characterize the polyurethanes. The mass transfer properties were measured by equilibrium sorption and water vapor permeability measurements. Mixed blocks loosen the inter-chain interaction due to phase mixing which decreases the crystallization of the soft segment in the resulting SPU. The crystallinity of mixed polyol block SPU increases when both polyols are crystallizable in the pure state. Highest loss tan delta value was observed for the sample containing PTMG 2900-PPG 3000 mixed soft segment due to their flexible and phase mixed structure which increases the chain mobility; this sample performed best among all four SPUs in equilibrium water sorption as well as water vapor permeability owing to their loose and nearly amorphous structure. Soft segment crystal melting further enhances the water vapor permeability significantly, which would make the membrane suitable for breathable textiles, packaging and medical applications. (C) 2006 Society of Chemical Industry.
机译:尝试研究混合的软链段对链段聚氨酯(SPU)的结构和传质性能的影响。为此目的,含有软链段的聚氨酯嵌段共聚物,例如聚己内酯二醇(数均分子量3000,PCL 3000),PCL 3000-聚丙二醇(数均分子量3000,PPG 3000),PCL 3000-聚丁二醇(数均分子量)。使用两步或三步合成方法合成平均分子量2900(PTMG 2900,PTMG 2900,PPG 3000-PTMG 2900)。所有的SPU都用亲水链段即二醇封端的聚环氧乙烷(数均分子量3400,PEG 3400)改性。使用傅里叶变换红外光谱,广角X射线衍射,差示扫描量热法和动态机械热分析来表征聚氨酯。通过平衡吸附和水蒸气渗透率测量来测量传质性能。由于相混合,混合的嵌段使链间相互作用松散,这降低了所得SPU中软链段的结晶。当两种多元醇都以纯态结晶时,混合多元醇嵌段SPU的结晶度增加。含有PTMG 2900-PPG 3000混合软链段的样品的损耗tanδ值最高,原因是它们具有柔性和相混合结构,从而增加了链的迁移率;该样品由于其松散且几乎为无定形的结构,在平衡吸水率和水蒸气透过率方面在所有四个SPU中表现最佳。软链段晶体的熔化进一步显着提高了水蒸气的渗透性,这将使该膜适合于透气性纺织品,包装和医疗应用。 (C)2006年化学工业协会。

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