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High-throughput fabrication of carbonized electrospun polyacrylonitrile/poly(acrylic acid) nanofibers with additives for enhanced electrochemical sensing

机译:具有增强电化学传感的碳化电纺聚丙烯/聚(丙烯酸)纳米纤维的高通量制造纳米纤维增强电化学传感

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摘要

Lightweight, polyacrylonitrile-derived electrodes with different additives were fabricated using high-throughput nozzle-free electrospinning. The electrospun precursor nanofibers (PNFs) containing iron oxide, gold nanoparticles, or reduced graphene oxide (rGO) were subjected to oxidative stabilization and carbonization to obtain a carbon-rich conductive nanofiber structure. Scanning electron microscopy showed that the carbon nanofibers contracted between 11 and 55% while the Fourier-transform infrared spectroscopy confirmed that the carbon nanofibers were thermally stable. Thermogravimetric and differential scanning calorimetry results revealed that the cross-linking of the chain molecules and cyclization were completed. Next, cyclic voltammetry results indicated that the electroactivity of the modified screen-printed carbon electrodes was decreased by 85% due to the presence of carbon glue. The modified device presented significant enhanced electrochemical responses with the inclusions of nanoparticles, with rGO showing a 2.13 times higher electroactive surface area, followed by iron oxide (two times) and gold nanoparticles (1.37 times) than the equivalent PNFs.
机译:使用高通量喷嘴静电纺丝制造重量轻,具有不同添加剂的聚丙烯腈衍生的电极。含有氧化铁,金纳米颗粒或还原的氧化石墨烯(RGO)的电纺前体纳米纤维(PNF)经受氧化稳定性和碳化,得到富含碳的导电纳米纤维结构。扫描电子显微镜表明,碳纳米纤维在11到55%之间收缩,而傅里叶变换红外光谱证实碳纳米纤维是热稳定的。热重分析和差示扫描量热法结果显示,完成链分子和环化的交联。接下来,循环伏安法结果表明,由于碳胶水的存在,改性丝网印刷碳电极的电激性降低了85%。改性装置呈现出显着的增强的电化学反应与纳米颗粒的夹杂物,RGO显示出2.13倍的电活性表面积,然后是氧化铁(两次)和金纳米颗粒(1.37次)比等同的PNF。

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