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首页> 外文期刊>Bulletin of Materials Science >Systematic investigation of parameters of an electrospinning process of poly(acrylic acid) nanofibres using response surface methodology
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Systematic investigation of parameters of an electrospinning process of poly(acrylic acid) nanofibres using response surface methodology

机译:使用响应表面方法的聚(丙烯酸酸)纳米纤维静电纺丝过程参数的系统研究

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In this study, response surface methodology (RSM) based on the central composite design (CCD) was used for modelling the electrospinning process of polyacrylic acid (PAA) nanofibres, so as to assess simultaneously the effect of the most important electrospinning parameters (concentration of polymer solution, applied voltage, distance between the nozzle and collector and flow rate of solution) on the diameter of electrospun PAA nanofibres. The surface morphology was studied by scanning electron microscopy (SEM). The average diameter of PAA nanofibres obtained was from 233 to 1210 nm from SEM images with different process parameters. The results showed that the solution concentration, the applied voltage and the distance between the nozzle and collector are, in that order, the most important parameters affecting the diameter of nanofibres. The flow rate, however, showed no significant effect on the nanofiber diameter. The RSM model predicted that under optimal electrospinning conditions (solution concentration of 3 w/v%, voltage of 16 kV, electrospinning distance of 15 cm and flow rate of 1.75 ml h-1), the nanofibres would be 262 nm in diameter, which was proved to be very close to the actual measured value. Therefore, the obtained results demonstrated the good performance of the RSM model in investigating the effect of electrospinning variables and predicting the diameter of PAA nanofibres. PAA nanofibres have great potential in applications such as sensors and biosensors, removal of heavy metals and contaminants, muscle tissue engineering, etc. and the use of thinner nanofibres leads to their improved performance in these applications.
机译:在该研究中,基于中央复合设计(CCD)的响应面方法(RSM)用于建模聚丙烯酸(PAA)纳米纤维的静电纺丝过程,以便同时评估最重要的静电纺丝参数的影响(浓度聚合物溶液,施加电压,喷嘴与收集器之间的距离和溶液的流速)在电纺PAA纳米纤维的直径上。通过扫描电子显微镜(SEM)研究了表面形态。获得的PAA纳米纤维的平均直径来自具有不同工艺参数的SEM图像的233-1210nm。结果表明,溶液浓度,喷嘴和集电极之间的施加电压和距离是影响纳米纤维直径的最重要的参数。然而,流速对纳米纤维直径没有显着影响。 RSM模型预测,在最佳静电纺丝条件下(溶液浓度为3W / v%,电压为16kV,静电纺丝距离为15cm,流速为1.75ml H-1),纳米纤维直径为262nm,这被证明是非常接近实际测量值。因此,所获得的结果表明了RSM模型在研究静电纺丝变量和预测PAA纳米纤维的直径方面的良好性能。 PAA Nanofibries在传感器和生物传感器等应用中具有很大的潜力,除去重金属和污染物,肌肉组织工程等。以及较薄的纳米纤维的使用导致它们在这些应用中的性能提高。

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