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Fabrication of aligned nanofibers by electric-field-controlled electrospinning: insulating-block method

机译:电场控制静电纺丝法制备取向纳米纤维:绝缘块法

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Aligned nanofiber arrays and mats were fabricated with an electrospinning process by manipulating the electric field. The electric field was modified by insulating blocks (IBs) that were installed between the nozzle and the substrate as guiding elements to control the trajectory of the electrospinning jet flow. Simulation results showed that the electric field was deformed near the IBs, resulting in confinement of the electrospinning jet between the blocks. The balance of the electric field in the vertical direction and the repulsive force by space charges in the confined electrified jet stream was attributed to the aligned motion of the jet. Aligned arrays of 200 nm thick polyethylene oxide nanofibers were obtained, exhibiting wave-shaped and cross patterns as well as rectilinear patterns. In addition, 40 mu m thick quasi-aligned carbon-nanofiber mats with anisotropic electrical property were also attained by this method.
机译:通过操纵电场,通过静电纺丝工艺制备了对齐的纳米纤维阵列和垫子。电场通过安装在喷嘴和基板之间的绝缘块(IBs)进行修改,这些绝缘块作为引导元件来控制静电纺丝射流的轨迹。仿真结果表明,电场在IBs附近变形,从而限制了块之间的静电纺丝射流。封闭的带电喷射流中垂直方向的电场与空间电荷的排斥力之间的平衡归因于喷射流的排列运动。获得了200nm厚的聚环氧乙烷纳米纤维的排列阵列,其显示出波形和十字图案以及直线图案。另外,通过该方法也获得了具有各向异性电性能的40μm厚的准取向碳-纳米纤维毡。

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