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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Electrospinning of uniform nanofibers of Polymers of Intrinsic Microporosity (PIM-1): The influence of solution conductivity and relative humidity
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Electrospinning of uniform nanofibers of Polymers of Intrinsic Microporosity (PIM-1): The influence of solution conductivity and relative humidity

机译:内在微孔(PIM-1)的聚合物均匀纳米纤维的静电纺丝:溶液导电性和相对湿度的影响

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Polymers of Intrinsic Microporosity (PIMs) are ultra-permeable macromolecules, which can be cast as a dense membrane and exploited in a wide spectrum of applications, particularly for gas separation owing to their extremely large inner surface area, free volume and high gas permeability. While they are mostly intended to serve as membranes for gas separation, in recent years, they have been also employed in water treatment applications owing to their solution processability, which enables the production of fibrous membranes by electrospinning. The fibrous form provides an increase in sorption performance, water permeability and flux for their application in water treatment. However, owing to the low conductivity of PIM-1 solutions in 1,1,2,2-tetrachloroethane (TeCA) that is the ideal solvent for the electrospinning of PIM-1 solutions, a higher polymer concentration is required to produce bead-free fibers. Furthermore, the electrospinning of highly concentrated PIM-1 solutions leads to the formation of microfibers. To tackle these problems, we herein incorporated an ammonium salt (i.e., tetraethylammonium bromide, TEAB) to increase the conductivity of PIM-1 solutions and study the impact of solution conductivity on the electrospinning of PIM-1 solutions. In parallel to the conductivity study, the influence of relative humidity on the electrospinning and morphology of PIM-1 fibers was explored. The addition of TEAB significantly increased the solution conductivity and drastically enhanced the electrospinnability of PIM-1. The electrospinning of PIM-1 solutions (10% (w/v)) in the presence 7.5 wt% TEAB (with respect to PIM-1) led to bead-free fibers, while at the same concentration, electrosprayed beads and droplet splashing were observed in the absence of TEAB. On the other hand, increasing humidity did not influence the electrospinnability of PIM-1 and the fiber texture, however, less fibers were formed in a given time at very high humidity conditions (similar to 80%). Overall, the experimental findings revealed that the addition of the salt drastically enhanced the electrospinnability of PIM-1 solutions owing to the enhanced conductivity and could lead to the formation of very thin PIM-1 fibers with 160 nm in diameter while no significant effect of relative humidity on the electrospinnability of PIM-1 solutions was observed.
机译:内在微孔(PIM)的聚合物是超渗透的大分子,其可以作为致密膜铸造并在广泛的应用中利用,特别是由于其极大的内表面积,自由体积和高透气性而在气体分离。虽然它们主要是用作气体分离的膜,但近年来,由于溶液加工性,它们也在水处理应用中使用,这使得能够通过静电纺丝生产纤维膜。纤维形式可提高吸附性能,水渗透性和助焊剂在水处理中的应用。然而,由于PIM-1溶液中的低导电率为1,1,2,2-四氯乙烷(TECA),这是PIM-1溶液的静电纺丝的理想溶剂,需要更高的聚合物浓度来产生珠子纤维。此外,高浓度的PIM-1溶液的静电纺丝导致微纤维的形成。为了解决这些问题,我们在此引入铵盐(即四乙基溴化铵,Temb),以提高PIM-1溶液的电导率,并研究溶液电导率对PIM-1溶液静电纺丝的影响。探讨了与电导率研究平行,探讨了相对湿度对PIM-1纤维静电纺丝和形态的影响。加入茶叶显着提高了溶液电导率,并大幅增强了PIM-1的电脱水平。 Pim-1溶液的静电纺丝(10%(w / v))在存在7.5wt%teab(相对于pim-1)中导致无胎珠纤维,而在相同的浓度下,电喷雾珠子和液滴溅在没有茶巾的情况下观察到。另一方面,增加湿度不会影响PIM-1的电脱水平,然而,在非常高的湿度条件下在给定时间内形成较少的纤维(类似于80%)。总体而言,实验结果表明,由于增强的电导率,添加盐的加入大大提高了PIM-1溶液的电脱水平,并且可能导致直径为160nm的非常薄的PIM-1纤维,而相对没有显着效果观察到PIM-1溶液的电脱水平的湿度。

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