Abstract
Here we show an intriguing phenomenon in the bubble electrospinning process that the ruptured film might be stripped upwards by an electronic force to form a very thin and long plate-like strip, which might been received in the metal receiv-er as discontinuous backbone-like wrinkled materials, rather than smooth nano-fibers or microspheres. The processes are called the bubble electrospinning. The electronic force can be replaced by a blowing air, and the process is called as the blown bubble spinning. We demonstrate that the size and thickness of the rup-tured film are the crucial parameters that are necessary to understand the vari-ous observations including beads and nanoporous materials. We identify the conditions required for a ruptured film to form discontinuous structure, and a critical width of the ruptured film to form a cylindrical fiber, above which a long and thin plate-like strip might be obtained, and a criterion for oscillatory jet di-ameter, which leads to bead morphology of the obtained fibers. The space of the adjacent beads depends on the fiber size. We anticipate our assay to be a starting point for more sophisticated study of the bubble electrospinning and the blown bubble spinning and for mass-production of both nanofibers and nanoscale dis-continuous materials.
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He, J. H., Kong, H. Y., Yang, R. R., Dou, H., Faraz, N., Wang, L., & Feng, C. (2012). Review on fiber morphology obtained by bubble electrospinning and blown bubble spinning. Thermal Science, 16(5), 1263–1279. https://doi.org/10.2298/TSCI1205263H
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