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Influence of a magnetic field in the electrospinning of nanofibers using solutions with PVDF, DMF, acetone and Fe3O4 nanoparticles

机译:用PVDF,DMF,丙酮和Fe3O4纳米粒子溶液耐溶液对纳米纤维静脉纺丝磁场的影响

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This work addresses the formation of polymeric nanofibers containing magnetic nanoparticles using electrospinning assisted by a magnetic field. During electrospinning, two Helmholtz coils were mounted on the system in order to create a uniform magnetic field. Polymeric solutions containing PVDF, DMF and acetone with a concentration of 18 wt% were adopted (DMF to Acetone ratio of 3 to 1). Iron Oxide Nanopowder (Fe3O4, particle diameter of 20 nm to 30 nm) to PVDF ratios were 1∶5, 1∶10 and 1∶15. The morphology of the nanofibers was analyzed by optical microscopy and SEM. The nanofibers resulted with a diameter of 100 nm to 700 nm, as verified by SEM. The fibers presented blisters distributed on their surfaces, indicating the formation of agglomerates of magnetic nanoparticles. The application of the electromagnetic field during electrospinning leads to smoother fibers.
机译:该工作地满足了含有磁场辅助磁性纳米颗粒的聚合物纳米纤维的形成。在静电纺丝期间,安装在系统上的两个亥姆霍兹线圈以形成均匀的磁场。采用含有PVDF,DMF和浓度为18wt%的PVDF,DMF和丙酮的聚合物溶液(DMF至丙酮比为3至1)。氧化铁纳米粉末(Fe3O4,粒径为20nm至30nm)至pvdf比率为1:5,1:10和1:15。通过光学显微镜和SEM分析纳米纤维的形态。纳米纤维导致直径为100nm至700nm,如SEM验证。纤维呈现在其表面上分布的衬垫,表明形成磁性纳米颗粒的聚集体。电磁场在静电纺丝期间的应用导致更平滑的纤维。

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