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Accurate fabrication of aligned nanofibers via a double-nozzle near-field electrospinning

机译:通过双喷嘴近场电纺技术精确制造取向纳米纤维

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摘要

The near-field electrospinning is considered as one of the most effective techniques to direct-write aligned fibers which can be applied to various high-tech areas, including energy harvester, tissue engineering, and wearable sensors. For large area aligned pattern printing, the multi-nozzle electrohydrodynamic print-ing is an efficient method to enhance productivity. As a branch of electrohydro-dynamic printing technology, the near-field electrospinning is a crucial concern to make an investigation for the formation of aligned nanofibers. Here we fabricated various nanostructures from beaded fibers to aligned fibers and crimped fibers by the double-nozzle near-field electrospinning process. We found three key parameters affecting the process, including the collector speed, the applied voltage, and the electrode-to-collector distance, and the collector speed is the key factor affecting the crimped frequency. This paper provides a reliable experi-mental basis and theoretical guidance for the multi-nozzle near-field electrospin-ning to accurately direct-write microfibers and nanofibers.
机译:近场静电纺丝被认为是直接写入对准光纤的最有效技术之一,可应用于各种高科技领域,包括能量收集器,组织工程和可穿戴传感器。对于大面积对齐图案印刷,多喷嘴电动流体动力印刷是提高生产率的有效方法。作为电动流体动力印刷技术的一个分支,近场静电纺丝是研究排列纳米纤维形成的关键问题。在这里,我们通过双喷嘴近场静电纺丝工艺制造了从串珠纤维到取向纤维和卷曲纤维的各种纳米结构。我们发现了影响该过程的三个关键参数,包括集电极速度,施加的电压以及电极到集电极的距离,而集电极速度是影响压接频率的关键因素。本文为多喷嘴近场静电纺丝准确地直接写入微纤维和纳米纤维提供了可靠的实验基础和理论指导。

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