Nanofiber engineering of microporous polyimides through electrospinning: Influence of electrospinning parameters and salt addition

静电纺丝 微型多孔材料 纳米纤维 材料科学 化学工程 高分子化学 聚合物 复合材料 纤维 工程类
作者
Fuat Topuz,Mahmoud A. Abdulhamid,Tibor Höltzl,György Székely
出处
期刊:Materials & Design [Elsevier BV]
卷期号:198: 109280-109280 被引量:108
标识
DOI:10.1016/j.matdes.2020.109280
摘要

The electrospinning of high-performance polyimides (PI) has recently sparked great interest. In this study, we explore the effect of the electrospinning parameters — namely polymer concentration, voltage, tip-to-collector distance and flow rate — and salt addition on the diameter, morphology, and spinnability of electrospun PI nanofibers. Three different polyimides of intrinsic microporosity (PIM-PIs) with high Brunauer–Emmett–Teller (BET) ranging from 270 to 506 m2 g−1, and two microporous polyimides, were synthesized through the polycondensation of 4,4′-(hexafluoroisopropylidene)diphthalic anhydride (6FDA) and aromatic diamines. The addition of tetraethylammonium bromide (TEAB) salt considerably increased the conductivity of all the PI solutions, significantly improved spinability, and resulted in thinner fibers. We also used molecular dynamic simulations to investigate the macromolecular mechanism of improved spinnability and fiber morphology in the presence of an ammonium salt. The small droplets detached from the parent droplet, followed by the rapid evaporation of the ions through the hydration effect, which facilitated the electrospinning. The resulting uniform nanofibers have great potential in environmental applications due to the presence of microporosity and hydrophobic pendant trifluoromethyl groups, which enhance the sorption performance of the fibers for hydrophobic species.
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