首页> 外文OA文献 >Fabrication of Two Polyester Nanofiber Types Containing the Biobased Monomer Isosorbide: Poly (Ethylene Glycol 1,4-Cyclohexane Dimethylene Isosorbide Terephthalate) and Poly (1,4-Cyclohexane Dimethylene Isosorbide Terephthalate)
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Fabrication of Two Polyester Nanofiber Types Containing the Biobased Monomer Isosorbide: Poly (Ethylene Glycol 1,4-Cyclohexane Dimethylene Isosorbide Terephthalate) and Poly (1,4-Cyclohexane Dimethylene Isosorbide Terephthalate)

机译:含有生物化单体异山梨醇的两种聚酯纳米纤维类型的制备:聚(乙二醇1,4-环己烷二甲基异山梨醇对苯二甲酸酯)和聚(1,4-环己烷二甲基异山梨醇对苯二甲酸酯)

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摘要

The thermal and mechanical properties of two types of polyester nanofiber, poly (1,4-cyclohexanedimethylene isosorbide terephthalate) (PICT) copolymers and the terpolyester of isosorbide, ethylene glycol, 1,4-cyclohexane dimethanol, and terephthalic acid (PEICT), were investigated. This is the first attempt to fabricate PICT nanofiber via the electrospinning method; comparison with PEICT nanofiber could give greater understanding of eco-friendly nanofibers containing biomass monomers. The nanofibers fabricated from each polymer show similar smooth and thin-and-long morphologies. On the other hand, the polymers exhibited significantly different mechanical and thermal properties; in particular, a higher tensile strength was observed for PICT nanofiber mat than for that of PEICT. We hypothesized that PICT has more trans-configuration than PEICT, resulting in enhancement of its tensile strength, and demonstrated this by Fourier transform infrared spectroscopy. In addition, PICT nanofibers showed clear crystallization behavior upon increased temperature, while PEICT nanofibers showed completely amorphous structure. Both nanofibers have better tensile properties and thermal stability than the typical polyester polymer, implying that they can be utilized in various industrial applications.
机译:两种聚酯纳米纤维的热和力学性能,聚(1,4-环己二甲基异山梨醇对苯二甲酸盐)(PICE)共聚物和异山梨醇的三聚 - 乙二醇,1,4-环己烷二甲醇和对苯二甲酸(致竞乳)调查。这是通过静电纺丝法制造Pict纳米纤维的首次尝试;与Peict Nanofiber的比较可以更好地了解含有生物质单体的环保纳米纤维。由每种聚合物制造的纳米纤维显示出类似的光滑和薄长的形态。另一方面,聚合物表现出显着不同的机械和热性能;特别地,观察到纳米纤维垫的较高拉伸强度而不是宗教的垫子。我们假设Pict,Pict具有比Peict更多的横向配置,导致增强其拉伸强度,并通过傅里叶变换红外光谱证明这一点。此外,Poct纳米纤维在较高温度下显示出透明的结晶行为,而氏族纳米纤维显示出完全无定形的结构。两个纳米纤维均具有比典型的聚酯聚合物更好的拉伸性和热稳定性,这意味着它们可以用于各种工业应用中。

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