Stretching-induced orientation to improve mechanical properties of electrospun pan nanocomposites


Autoria(s): Hou, X. X.; Yang, X. P.; Zhang, F.; Wu, S. Z.; Waclawik, E.
Data(s)

01/12/2008

Resumo

Partially aligned and oriented polyacrylonitrile(PAN)-based nanofibers were electrospun from PAN and SWNTs/PAN in the solution of dimethylformamide(DMF) to make the carbon nanofibers. The as-spun nanofibers were hot-stretched in an oven to enhance its orientation and crystallinity. Then it were stabilized at 250 square under a stretched stress, and carbonized at 1000 square in N-2 atmosphere by fixing the length of the stabilized nanofiber to convert them into carbon nanofibers. With this hot-stretched process and with the introduction of SWNTs, the mechanical properties will be enhanced correspondingly. The crystallinity of the stretched fibers confirmed by X-ray diffraction has also increased. For PAN nanofibers, the improved fiber alignment and crystallinity resulted in the increased mechanical properties, such as the modulus and tensile strength of the nanofibers. It was concluded that the hot-stretched nanofiber and the SWNTs/PAN nanofibers can be used as a potential precursor to produce high-performance carbon composites.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/25871/

Publicador

World Scientific Publishing Company

Relação

http://eprints.qut.edu.au/25871/1/c25871.pdf

DOI:10.1142/S0217979208051364

Hou, X. X., Yang, X. P., Zhang, F., Wu, S. Z., & Waclawik, E. (2008) Stretching-induced orientation to improve mechanical properties of electrospun pan nanocomposites. International Journal of Modern Physics B, 22(31 & 32), pp. 5913-5918.

Direitos

Copyright 2008 World Scientific Publishing Company

Fonte

Faculty of Science and Technology; Institute for Sustainable Resources; School of Physical & Chemical Sciences

Palavras-Chave #030600 PHYSICAL CHEMISTRY (INCL. STRUCTURAL) #030300 MACROMOLECULAR AND MATERIALS CHEMISTRY #nanofiber #electrospinning #polyacrylonitrile #orientation
Tipo

Journal Article