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Title
Issues in production of carbon nanotubes and related nanocomposites: A comprehensive review
Authors
M. HASANZADEH V. MOTTAGHITALAB R. ANSARI B. HADAVI MOGHADAM and A. K. HAGHI
Received
July 10, 2013
Published
Volume 49 Issue 3-4 March-April
Keywords
carbon nanotube, electrospinning, mechanical properties, theoretical approaches
Abstract
Polymer nanofibers are being increasingly used for a wide range of applications owing to their high specific surface
area. The electrospinning process, as a novel and effective method for producing nanofibers from various materials, has
been utilized to fabricate nanofibrous membranes. Carbon nanotubes (CNTs) have a number of outstanding
mechanical, electrical, and thermal properties, which make them attractive as reinforcement in a polymer matrix. The
incorporation of CNT into polymer nanofibers can improve the properties of electrospun nanofibrous composites. This
paper provides a comprehensive review of current research and development in the field of electrospun CNT-polymer
composite nanofiber with emphasis on the processing, properties, and application of composite nanofiber, as well as the
theoretical approaches to predicting the mechanical behavior of CNT-polymer composites. The current limitations,
research challenges, and future trends in modeling and simulation of electrospun polymer composite nanofibers are also
discussed.
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