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Electrical properties of ultrafine nylon-6 nanofibers prepared via electrospinning
R. Nirmala, J.W. Jeong, H.J. Oh, , M. El-Newehy, S.S. Al-Deyab, H.Y. Kim
Published in
2011
Volume: 12
   
Issue: 8
Pages: 1021 - 1024
Abstract
We report on the preparation and electrical characterization of nylon-6 nanofibers via electrospinning technique. During electrospinning, the polymer solution became highly ionized and emerging out of the micro-tip syringe by forming mesh-like ultrafine nanofibers structure in between the main fibers. The resultant nylon-6 nanofibers were well-oriented with uniform structure. The diameter of the ultrafine nanofibers (7 to 40 nm) is one order less than those of main fibers (100 to 200 nm). The current-voltage (I-V) measurements revealed a linear curve with an occurrence of negative differential resistance (NDR) behavior. The existence of NDR region in the nylon-6 nanofibers can be attributed to the tunneling current through the ultrafine structures. The fabrication of nanofibers, in the form of ultrafine mesh-like form, is relatively fast and inexpensive, and it paves the way to build up of new dimension for nano device applications. © 2011 The Korean Fiber Society and Springer Netherlands.
About the journal
JournalFibers and Polymers
ISSN12299197