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Fabrication and Characterization of Non-Equilibrium Plasma-Treated PVDF Nanofiber Membrane-Based Sensors

机译:非平衡等离子体处理的PVDF纳米纤维膜的制造与表征

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摘要

The effect of a self-pulsing non-equilibrium plasma discharge on piezoelectric PVDF nanofiber membrane was investigated. The plasma discharge was generated in air with a DC power source, with a discharge current of 0.012 mA, a nominal interelectrode separation of 1 mm, and discharge voltage of ~970 V. In a continuous fabrication process, the electrospinning method was used to generate thin nanofiber membrane with a flow rate of 0.7–1 mL h−1 and 25–27 kV voltage to obtain the nanofiber with high sensitivity and a higher degree of alignment and uniformity over a larger area. Plasma treatment was applied on both single layer and multi-layer (three layers) nanomembranes. In addition, simultaneously, the nanofiber membranes were heat-treated at a glass transition temperature (80–120 °C) and then underwent plasma treatment. Fourier-transform infrared (FTIR) spectroscopy showed that the area under the curve at 840 and 1272 cm−1 (β phase) increased due to the application of plasma and differential scanning calorimeter (DSC) indicated an increase in the degree of crystallinity. Finally, PVDF sensors were fabricated from the nanofibers and their piezoelectric properties were characterized. The results suggested that compared to the pristine samples the piezoelectric properties in the plasma and plasma-heat-treated sensors were enhanced by 70% and 85% respectively.
机译:研究了自脉冲非平衡等离子体放电对压电PVDF纳米纤维膜的影响。在空气中产生的等离子体放电用的直流电源,用0.012毫安,1mm的标称极间分离的放电电流,和〜970 V.在连续制造工艺的放电电压,使用静电纺丝法,以生成薄纳米纤维膜的流速为0.7-1mL H-1和25-27kV电压,得到具有高灵敏度的纳米纤维,并且在更大的区域上具有更高的对准和均匀性。在单层和多层(三层)纳米爆发上施加等离子体处理。另外,同时,在玻璃化转变温度(80-120℃)下纳米纤维膜进行热处理,然后进行血浆处理。傅里叶变换红外(FTIR)光谱显示,由于施加等离子体和差示扫描量热计(DSC),曲线下的曲线下的面积增加,表示结晶度的增加。最后,从纳米纤维制造PVDF传感器,其压电性能表征。结果表明,与原始样品相比,等离子体和血浆和血浆 - 热处理传感器中的压电性能分别增强了70%和85%。

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