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Fabrication and Morphological Investigation of Multi-walled Electrospun Polymeric Nanofibers

机译:多壁电纺聚合物纳米纤维的制造与形态学研究

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Multi-walled nanofibers with their outstanding properties have found expanding applications on drug delivery systems, biosensors, self-healing materials and many other state-of-the-art technologies. This work investigates the fabrication and morphological control of multi-walled structured electrospun polymeric nanofibers by multi-axial electrospinning system. This process is based on a nozzle allowing multi-axial extrusion of different fluids with concentric orders. Two spinnable polymers of poly(methyl methacrylate) and polyacrylamide are chosen for the fabrication of middle and outer walls of co-axial hollow nanofibers, respectively. Hansen's solubility parameters are used to systematically optimize the solvent selection for each layer and control the degree of miscibility of layers with the purpose of tailoring the final wall morphology of nanofibers. Characterization studies are performed by Scanning Electron Microscopy, Energy-Dispersive X-ray Spectroscopy, Fourier Transform Infrared Spectroscopy, and Thermal Gravimetric Analyzer.
机译:具有优异性能的多壁纳米纤维已发现扩展在药物递送系统,生物传感器,自我愈合材料和许多最先进的技术上的应用。该工作研究了多轴形静电纺丝系统的多壁结构电纺聚合物纳米纤维的制造和形态控制。该方法基于喷嘴,允许具有同心顺序的多轴挤出不同的流体。选择两个聚丙烯酰胺的两种可旋转聚合物,分别用于制造共轴空心纳米纤维的中间和外壁。 Hansen的溶解度参数用于系统地优化各层的溶剂选择,并控制层的混溶性,目的是剪裁纳米纤维的最终壁形态。通过扫描电子显微镜,能量分散X射线光谱,傅里叶变换红外光谱和热重分析仪进行表征研究。

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