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首页> 外文期刊>Journal of Applied Polymer Science >Structure-Property Relationships of Degradable Polyurethane Elastomers Containing an Amino Acid-Based Chain Extender
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Structure-Property Relationships of Degradable Polyurethane Elastomers Containing an Amino Acid-Based Chain Extender

机译:含氨基酸扩链剂的可降解聚氨酯弹性体的结构-性能关系

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A series of degradable polyurethanes of variable soft segment chemistry and content were synthesized and characterized.An amino acid-based diester chain extender was used to confer degradability and both polycaprolactone diol (PCL) and polyethylene oxide (PEO)were used as soft segments.In addition,the diisocyanate component was a potentially nontoxic diisocyanate (2,6-diisocyanato methyl caproate,LDI).The physicochemical properties of these unique series of polyurethanes were investigated.It was found that the PEO containing polyurethanes were generally weak,tacky amorphous materials. In contrast, the PCL polyurethanes were relatively strong,elastomeric materials which ranged from completely amorphous to semicrystalline as noted by differential scanning calorimetry. The PCL containing polyurethanes exhibited increasing tensile strength, modulus, and ultimate strain with increasing PCL molecular weight because of increasing phase separation and increasing soft segment crystallinity.Fourier transform infrared analysis showed significan hard segment urea and urethane hudrogen bonding which increased with hard wegment content,although interphase bonding is believed to be significant for the PCL polyurethanes.Surface characterization carried out by contact angle analysis and X-ray photoelectron spectroscopy indicated soft segment surface enrichment for all of the polyurethanes. The PEO-based polymers were very hydrophilic whereas the PCL-based polymers displayed significantly higher contact angles, indicating greater surface hydrophobicity.The observed diversity in material properties suggests that these polyurethanes may be useful for a wide range of applications.
机译:合成并表征了一系列具有可变软链段化学性质和含量的可降解聚氨酯,使用基于氨基酸的二酯扩链剂赋予降解性,同时使用聚己内酯二醇(PCL)和聚环氧乙烷(PEO)作为软链段。此外,二异氰酸酯成分是潜在的无毒二异氰酸酯(2,6-二异氰酸基己酸甲酯,LDI)。研究了这些独特系列聚氨酯的理化性质。发现含PEO的聚氨酯通常是弱,粘性的无定形材料。相反,PCL聚氨酯是相对坚硬的弹性材料,如差示扫描量热法所指出的,其范围从完全无定形到半结晶。含PCL的聚氨酯由于增加了相分离和增加了软链段的结晶度而具有更高的拉伸强度,模量和极限应变,随着PCL分子量的增加。傅立叶变换红外分析表明,重要的硬链段尿素和尿烷的氢键结合随硬质含量的增加而增加,尽管相间键合对于PCL聚氨酯很重要。通过接触角分析和X射线光电子能谱进行的表面表征表明,所有聚氨酯均具有软链段表面富集。 PEO-基聚合物具有很高的亲水性,而PCL-基聚合物则显示出更高的接触角,表明更大的表面疏水性。观察到的材料性能差异表明,这些聚氨酯可能在广泛的应用中有用。

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