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Preparation Stabilization and Carbonization of a Novel Polyacrylonitrile-Based Carbon Fiber Precursor

机译:新型聚丙烯腈基碳纤维前驱体的制备稳定和碳化

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摘要

The quality of polyacrylonitrile (PAN) precursor has a great influence on the properties of the resultant carbon fibers. In this paper, a novel comonomer containing the sulfonic group, 2-acrtlamido-2-methylpropane acid (AMPS), was introduced to prepare P(AN-co-AMPS) copolymers using itaconic acid (IA) as the control. The nanofibers of PAN, P(AN-co-IA), and P(AN-co-AMPS) were prepared using the electrospinning method. The effect of AMPS comonomer on the carbon nanofibers was studied using scanning electron microscopy (SEM), differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), thermogravimetric analysis (TGA) and Raman spectrum. The structural evolutions of PAN-based nanofibers were quantitatively tracked by FTIR and XRD during the thermal oxidative stabilization (TOS) process. The results suggested that P(AN-co-AMPS) nanofibers had the lower heat release rate (ΔH/ΔT = 26.9 J g−1 °C−1), the less activation energy of cyclization (Ea1 = 26.6 kcal/mol and Ea2 = 27.5 kcal/mol), and the higher extent of stabilization (Es and SI) during TOS process, which demonstrated that the AMPS comonomer improved the efficiency of the TOS process. The P(AN-co-AMPS) nanofibers had the better thermal stable structures. Moreover, the carbon nanofibers derived from P(AN-co-AMPS) precursor nanofibers had the better graphite-like structures (XG = 46.889). Therefore, the AMPS is a promising candidate comonomer to produce high performance carbon fibers.
机译:聚丙烯腈(PAN)前体的质量对所得碳纤维的性能影响很大。本文介绍了一种新型的含磺酸基的共聚单体2-ac啶基-2-甲基丙酸(AMPS),以衣康酸(IA)为对照制备P(AN-co-AMPS)共聚物。使用电纺丝法制备了PAN,P(AN-co-IA)和P(AN-co-AMPS)的纳米纤维。使用扫描电子显微镜(SEM),差示扫描量热法(DSC),傅里叶变换红外光谱(FTIR),X射线衍射(XRD),热重分析(TGA)和拉曼光谱研究了AMPS共聚单体对碳纳米纤维的影响。在热氧化稳定(TOS)过程中,FTIR和XRD定量跟踪了PAN基纳米纤维的结构演变。结果表明,P(AN-co-AMPS)纳米纤维的热释放速率较低(ΔH/ΔT= 26.9 J g -1 °C -1 ),环化的活化能较小(Ea1 = 26.6 kcal / mol,Ea2 = 27.5 kcal / mol),并且在TOS过程中具有较高的稳定度(Es和SI),这表明AMPS共聚单体提高了TOS过程的效率。 P(AN-co-AMPS)纳米纤维具有更好的热稳定性结构。此外,从P(AN-co-AMPS)前体纳米纤维衍生的碳纳米纤维具有更好的石墨状结构(XG = 46.889)。因此,AMPS是生产高性能碳纤维的有希望的候选共聚单体。

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