Electrospinning of polyetherketoneketone fibers: The effect of fabrication regime on the morphology, physico-chemical and biological characteristics

IF 4.1 2区 化学 Q2 POLYMER SCIENCE Polymer Pub Date : 2024-08-26 DOI:10.1016/j.polymer.2024.127549
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Abstract

Electrospinning is a unique technology based on the fabrication of polymer fibers from the solution under an applied electric field. Electrospun membranes are applied in various fields, starting from filter technologies to tissue engineering. Polyalyletherketones (PAEK) is a family of synthetic bioinert polymers characterized by outstanding mechanical performance, high chemical stability, and biocompatibility. In the present study, the effect of electrospinning parameters (collector-to-tip distance, applied voltage, spinning solution flow rate and polymer concentration in the spinning solution) on the morphology of the fabricated polyetherketoneketone (PEKK) membranes as well as their crystal structure, chemical stability and biocompatibility was investigated. Based on 108 combinations of the electrospinning parameters, it was found that minimum concentration of PEKK in the spinning solution in 1,1,1,3,3,3-hexafluoropropan-2-ol (HFP) required for the fibers’ formation is 4 wt %, while the applied voltage providing fibers without defects was found at 20 kV. It was demonstrated that the tested electrospinning regimes allow to fabricate the membranes with average fiber diameter from 0.76 ± 0.29 to 1.46 ± 0.60 μm and porosity from 87 ± 1 to 92 ± 1 %. It was found that electrospinning process has no effect on the chemical structure of PEKK macromolecules. Electrospinning parameters had no effect on crystal structure of PEKK in the fabricated membranes, which was found to be amorphous. The fabricated membranes demonstrated high Young modulus (above 150 MPa) and elongation over 170 %, were stable in strong alkali and acid solutions and biocompatible towards mouse embryonic fibroblasts.

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聚醚酮酮纤维的电纺丝:制造工艺对形态、物理化学和生物特性的影响
电纺丝是一种独特的技术,其原理是在外加电场下从溶液中制造聚合物纤维。电纺丝膜可应用于从过滤技术到组织工程等多个领域。聚芳醚酮(PAEK)是一种合成生物惰性聚合物,具有出色的机械性能、高化学稳定性和生物相容性。本研究探讨了电纺丝参数(集电极到顶端的距离、施加电压、纺丝溶液流速和纺丝溶液中的聚合物浓度)对制备的聚醚醚酮(PEKK)膜的形态及其晶体结构、化学稳定性和生物相容性的影响。根据 108 种电纺丝参数组合,发现在 1,1,1,3,3,3-六氟丙烷-2-醇(HFP)纺丝溶液中形成纤维所需的 PEKK 最低浓度为 4 wt %,而提供无缺陷纤维的施加电压为 20 kV。实验证明,测试的电纺丝机制可制造出平均纤维直径为 0.76 ± 0.29 至 1.46 ± 0.60 μm 的膜,孔隙率为 87 ± 1 至 92 ± 1 %。研究发现,电纺丝过程对 PEKK 大分子的化学结构没有影响。电纺丝参数对制备膜中 PEKK 的晶体结构也没有影响,制备膜中的 PEKK 是无定形的。制成的膜具有较高的杨氏模量(150 兆帕以上)和超过 170 % 的伸长率,在强碱和强酸溶液中稳定,对小鼠胚胎成纤维细胞具有生物相容性。
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来源期刊
Polymer
Polymer 化学-高分子科学
CiteScore
7.90
自引率
8.70%
发文量
959
审稿时长
32 days
期刊介绍: Polymer is an interdisciplinary journal dedicated to publishing innovative and significant advances in Polymer Physics, Chemistry and Technology. We welcome submissions on polymer hybrids, nanocomposites, characterisation and self-assembly. Polymer also publishes work on the technological application of polymers in energy and optoelectronics. The main scope is covered but not limited to the following core areas: Polymer Materials Nanocomposites and hybrid nanomaterials Polymer blends, films, fibres, networks and porous materials Physical Characterization Characterisation, modelling and simulation* of molecular and materials properties in bulk, solution, and thin films Polymer Engineering Advanced multiscale processing methods Polymer Synthesis, Modification and Self-assembly Including designer polymer architectures, mechanisms and kinetics, and supramolecular polymerization Technological Applications Polymers for energy generation and storage Polymer membranes for separation technology Polymers for opto- and microelectronics.
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