César A. García-Pérez , Victor A. González-Dueñas , Fernando J. Rodríguez-Macías , Carmina Menchaca-Campos , O.A. González-Noriega , Yadira I. Vega-Cantú
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The characterization of the composites makes evident the structural modification that the material underwent after the treatments. The electrochemical parameters were measured by electrochemical impedance spectroscopy (EIS), with the samples immersed in H<sub>2</sub>SO<sub>4</sub> 1 M as electrolyte. The PVA/MWCNTs-COOH composites with thermal treatment (340 °C) showed a considerable decrease in total impedance of up to 6 orders of magnitude (124 Ω) with respect to the blank sample (2.3 × 10<sup>8</sup> Ω), as a function of the immersion time in the acid solution. As well as, an increase in the specific capacitance of up to 8 orders of magnitude (1.01×10<sup>−2</sup> F cm<sup>−2</sup>) with respect to the blank sample (5.07 × 10<sup>−10</sup> F cm<sup>−2</sup>) for the composite manufactured by the electrospinning technique. 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引用次数: 0
摘要
这项研究的基础是通过制造和表征聚乙烯醇(PVA)/带羧基多壁碳纳米管(MWCNTs-COOH)(1%)的电极复合材料,合成具有电容特性和低成本的新材料,以寻求高效的能量存储。利用力纺和电纺技术开发了复合纤维膜,并比较了纤维的物理结构及其对电容特性的影响。这些样品通过 SEM、FESEM、FT-IR、XRD、TGA、拉曼光谱和电化学技术进行了表征。复合材料的表征清楚地表明了材料在处理后发生的结构变化。样品浸入 1 M 的 H2SO4 作为电解质,通过电化学阻抗光谱(EIS)测量电化学参数。与空白样品(2.3 × 108 Ω)相比,经过热处理(340 °C)的 PVA/MWCNTs-COOH 复合材料的总阻抗显著降低了 6 个数量级(124 Ω),这是在酸溶液中浸泡时间的函数。此外,与空白样品(5.07 × 10-10 F cm-2)相比,电纺丝技术制造的复合材料的比电容增加了 8 个数量级(1.01×10-2 F cm-2)。通过力纺丝技术获得的具有方向性的纤维、电纺丝观察到的高度交叉网络以及 PVA/MWCNTs-COOH 复合材料的结构改性所显示的电化学特性,使其成为一种具有潜在技术应用价值的材料,如电化学电容器的电极。
Functional and structural modification of polyvinyl alcohol/carbon nanotubes composite fibers
This research was based on the synthesis of new materials with capacitive properties and low cost, seeking efficient energy storage, through the manufacture and characterization of composite materials of polyvinyl alcohol (PVA)/multiwalled carbon nanotubes with carboxyl group (MWCNTs-COOH) (1 %) for electrodes. Forcespinning and electrospinning techniques were used to develop composite fiber films and compare the physical structure of the fibers and its influence on their capacitive properties. These samples were characterized by SEM, FESEM, FT-IR, XRD, TGA, Raman spectroscopy and electrochemical techniques. The characterization of the composites makes evident the structural modification that the material underwent after the treatments. The electrochemical parameters were measured by electrochemical impedance spectroscopy (EIS), with the samples immersed in H2SO4 1 M as electrolyte. The PVA/MWCNTs-COOH composites with thermal treatment (340 °C) showed a considerable decrease in total impedance of up to 6 orders of magnitude (124 Ω) with respect to the blank sample (2.3 × 108 Ω), as a function of the immersion time in the acid solution. As well as, an increase in the specific capacitance of up to 8 orders of magnitude (1.01×10−2 F cm−2) with respect to the blank sample (5.07 × 10−10 F cm−2) for the composite manufactured by the electrospinning technique. The obtaining of fibers with directionality as a result of the forcespinning technique, the highly crossed network observed by electrospinning and the electrochemical properties shown by the structural modification of PVA/MWCNTs-COOH composite, make it, a material with potential technological applications such as electrode in electrochemical capacitors.