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Fabrication of Magnetic Nanofibers by Needleless Electrospinning from a Self-Assembling Polymer Ferrofluid Cone Array

机译:通过自组装聚合物铁磁锥阵列的无针静电纺丝法制备磁性纳米纤维。

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摘要

Magnetic nanofiber has been widely applied in biomedical fields due to its distinctive size, morphology, and properties. We proposed a novel needleless electrospinning method to prepare magnetic nanofibers from the self-assembling “Taylor cones” of poly(vinyl pyrrolidone) (PVP)/Fe3O4 ferrofluid (PFF) under the coincident magnetic and electric fields. The results demonstrated that a static PFF Rosensweig instability with a conical protrusion could be obtained under the magnetic field. The tip of the protrusion emitted an electrospinning jet under the coincident magnetic and electric fields. The needleless electrospinning showed a similar process phenomenon in comparison with conventional electrospinning. The prepared nanofibers were composed of Fe3O4 particles and PVP polymer. The Fe3O4 particles aggregated inside and on the surface of the nanofibers. The nanofibers prepared by needleless electrospinning exhibited similar morphology compared with the conventionally electrospun nanofibers. The nanofibers also exhibited good ferromagnetic and magnetic field responsive properties.
机译:磁性纳米纤维因其独特的尺寸,形态和特性而被广泛应用于生物医学领域。我们提出了一种新颖的无针电纺方法,该方法是在磁场和电场一致的情况下,利用聚乙烯吡咯烷酮(PVP)/ Fe3O4铁磁流体(PFF)的自组装“泰勒锥”制备磁性纳米纤维。结果表明,在磁场作用下可以获得具有圆锥形突起的静态PFF Rosensweig不稳定性。突起的尖端在同时的磁场和电场下发出静电纺丝射流。与常规电纺丝相比,无针电纺丝显示出相似的工艺现象。制备的纳米纤维由Fe3O4颗粒和PVP聚合物组成。 Fe3O4颗粒聚集在纳米纤维的内部和表面。与常规的电纺丝纳米纤维相比,通过无针电纺丝制备的纳米纤维表现出相似的形态。纳米纤维还表现出良好的铁磁和磁场响应特性。

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