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首页> 外文期刊>Journal of Fiber Science and Technology >Electrospun Polyetherimide-Graphene Oxide Nanofiber Electrodes for Enhanced Conductivity
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Electrospun Polyetherimide-Graphene Oxide Nanofiber Electrodes for Enhanced Conductivity

机译:电纺聚醚酰亚胺 - 石墨烯氧化物纳米纤维电极,用于增强电导率

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Polyetherimide (PEI) is recognized as a potential candidate for electrochemical sensor matrix which can be used for heavy metal ion and reactive chemical substance sensing applications. However, the relatively low conductivity of PEI material limits its usage of electrochemical sensor applications. Modifying PEI membrane considerably improve the electron conductivity and electrochemical property of polymer. Conductive polyetherimide-graphene oxide (PEI-GO) composite nanofiber membrane was synthesized via electrospinning technique in order to modify electrochemical sensor electrodes. In order to optimize the electrospinning process protocol such as viscosity, surface tension and conductivity and obtained smooth electrospun fiber, PEI were electrospun from two different solvents namely n-methyl-2-pyrrolidone (NMP) and combination of NMP/ dimethylformamide (DMF). Physical and electrical properties of the nanofiber were analysed in terms of its hydrophobicity, porosity and conductivity by manipulating the concentration of PEI from 20 wt% to 30 wt% and GO loading from 0.1 wt% to 0.5 wt%. Electrospun of 25 wt% PEI in NMP/DMF produced the highest porosity and liquid uptake of 97.81% and 2846.23% respectively. The addition of GO at 0.5 wt% into 25 wt% of PEI (NMP/DMF) improved the porosity and liquid uptake up to 98.83% and 5400%,respectively, while the conductivity increases to 32.71 μS/cm which is 10 folds higher than GO free PEI fiber. When the conductivity of drop-casted PEI-GO modified electrodes was compared to the electrospun PEI-GO fiber modified electrodes, the latter showed 2-3 folds higher. Proposed PEI-GO electrospun fiber with the enhanced conductivity, porosity and hydrophobicity along with high chemical stability can be used as an efficient conductive matrix for electrochemical electrode applications such as heavy metal ion sensing and reactive chemical sensing application.
机译:聚醚酰亚胺(PEI)是公认的用于电化学传感器矩阵的潜在候选者,其可用于重金属离子和反应性化学物质感测应用。然而,PEI材料的相对低的导电性限制的电化学传感器应用中的使用情况。改性的PEI膜显着地改善的电子传导性和聚合物的电化学性质。导电聚醚酰亚胺石墨烯氧化物(PEI-GO)复合纳米纤维膜通过以改变电化学传感器的电极电纺丝技术合成。为了优化电纺丝工艺协议,例如粘度,表面张力和电导率并获得平滑电纺丝纤维,PEI是从两种不同的溶剂即N-甲基-2-吡咯烷酮(NMP)和NMP /二甲基甲酰胺(DMF)的组合电纺丝。物理和纳米纤维的电性质通过从0.1%(重量)由20%(重量)操纵PEI的浓度至30%(重量)和GO装载到0.5%(重量)在其疏水性,多孔性和导电性方面进行分析。在NMP / DMF 25重量%PEI的电纺丝产生的分别的97.81%和2846.23%的最高的孔隙率和液体吸收率。 GO中的0.5%(重量)加入到PEI(NMP / DMF)的25%(重量)提高了孔隙率和液体吸收率分别高达98.83%和5400%,而导电性增加至32.71μS/厘米,其高于10倍GO自由PEI纤维。当下拉式浇铸PEI-GO的导电性修饰电极进行了比较所述电PEI-GO纤维修饰电极,后者显示出2-3倍高。具有增强的导电性,孔隙率和疏水具有高化学稳定性沿着提出PEI-GO电纺纤维可被用作用于电化学电极应用的有效导电基质,如重金属离子感测和反应性化学传感应用。

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