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Electrospinning Fundamentals: Optimizing Solution and Apparatus Parameters
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Microscopy analysis and production rate data for needleless vertical rods electrospinning parameters.

Hyeon Ung Shin1, Yalong Li1, Ariel Paynter1

  • 1Department of Chemical and Biomolecular Engineering, The University of Akron, OH 44325, USA.

Data in Brief
|September 25, 2015
PubMed
Summary

This study introduces a novel multiple vertical rod setup for needless electrospinning, enhancing polymer fiber production. Further research is needed to optimize parameters for this promising technique.

Keywords:
Electric fieldsElectrospinningPolymer fibers

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Area of Science:

  • Materials Science
  • Nanotechnology
  • Polymer Science

Background:

  • Electrospinning is a versatile technique for producing polymer fibers.
  • Traditional electrospinning methods often require needles, posing challenges in scalability and clogging.
  • Needleless electrospinning offers a potential solution for high-throughput fiber fabrication.

Purpose of the Study:

  • To demonstrate the proof of concept for a novel multiple vertical rod setup for needless electrospinning.
  • To investigate the effects of applied voltage and gap distance on submicron polymer fiber fabrication using this setup.
  • To report the impact of these parameters on fiber diameter and production rate.

Main Methods:

  • Fabrication of submicron polymer fibers using a multiple vertical rod setup for needless electrospinning.
  • Systematic variation of applied voltage and gap distance while keeping the rod array fixed.
  • Analysis of the resulting polymer fibers to determine diameter and production rate.

Main Results:

  • The multiple vertical rod setup successfully fabricated submicron polymer fibers.
  • Variations in applied voltage and gap distance influenced fiber diameter and production rate.
  • Initial findings suggest potential for increased fiber production compared to conventional methods.

Conclusions:

  • The multiple vertical rod design is a viable concept for needleless electrospinning.
  • Applied voltage and gap distance are critical parameters affecting fiber characteristics and output.
  • Further extensive experimentation is required to fully understand and optimize the system.