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박영빈

Park, Young-Bin
Functional Intelligent Materials Lab.
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Microwave-induced hierarchical iron-carbon nanotubes nanostructures anchored on polypyrrole/graphene oxide-grafted woven Kevlar (R) fiber

Author(s)
Hazarika, AnkitaDeka, Biplab K.Kim, DoYoungPark, Young-BinPark, Hyung Wook
Issued Date
2016-06
DOI
10.1016/j.compscitech.2016.04.022
URI
https://scholarworks.unist.ac.kr/handle/201301/19135
Fulltext
http://www.sciencedirect.com/science/article/pii/S0266353816301609
Citation
COMPOSITES SCIENCE AND TECHNOLOGY, v.129, pp.137 - 145
Abstract
Iron-carbon nanotube (Fe-CNT) nanostructures were synthesized in 15-30 s through the microwave irradiation of woven Kevlar(R) fibers (WKFs) deposited with either polypyrrole (PPy) or polypyrrole/graphene oxide (GO). Microwave-induced growth of Fe-CNT on the base fibers is a simple technique and has not been previously reported using WKF as a substrate. This method of forming composites avoids the difficulties associated with obtaining a homogeneous dispersion of CNT in a surrounding matrix material. Iron-decorated CNTs were synthesized on WKF and polyester resin (PES) via vacuum-assisted resin transfer molding. Substantial improvements in tensile strength (upto 122.57%) and moduli (upto 89.82%) were observed for Fe-CNTs grown on the WKF/PES composites. The impact response and in-plane shear strength were also significantly enhanced compared to bare WKF/PES composites. In situ polymerization of pyrrole on WKF altered the electrically insulating behavior of Kevlar, creating a conductive material. Fe-CNT/PPy-coated WKF/PES exhibited the highest electrical conductivity. This proposed approach for growing Fe-CNTs constitutes a novel and economical means of developing high-performance WKF/CNT composites with enhanced mechanical properties and electrical conductivity.
Publisher
ELSEVIER SCI LTD
ISSN
0266-3538
Keyword (Author)
Aramid fiberElectrical conductivityHybrid compositesIron-carbon nanotubes nanostructureMechanical properties
Keyword
LOW-VELOCITY IMPACTMECHANICAL-PROPERTIESGRAPHENE OXIDECOMPOSITESGROWTHNANOCOMPOSITESNANOPARTICLESFUNCTIONALIZATIONPOLYMERIZATIONPYROLYSIS

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