Anisotropy in CNT composite fabricated by combining directional freezing and gamma irradiation of acrylic acid
Author | Osička, Josef |
Author | Ilčíková, Marketa |
Author | Mrlík, Miroslav |
Author | Al-Maadeed, Mariam Ali S.A. |
Author | Šlouf, Miroslav |
Author | Tkac, Jan |
Author | Kasák, Peter |
Available date | 2016-09-28T09:06:03Z |
Publication Date | 2016-05-05 |
Publication Name | Materials & Design |
Identifier | http://dx.doi.org/10.1016/j.matdes.2016.02.101 |
Citation | Osička, J., Ilčíková, M., Mrlík, M., Al-Maadeed, M.A.S.A., Šlouf, M., Tkac, J., Kasák, P. Anisotropy in CNT composite fabricated by combining directional freezing and gamma irradiation of acrylic acid (2016) Materials and Design, 97, pp. 300-306. |
ISSN | 02641275 |
Abstract | A novel fabrication process for composite consisting of organized modified carbon nanotubes (CNT) in the polyacrylic acid (PAA) matrix has been developed. The CNT were organized along crystallite domains during a directional freezing process and subsequently fixed by the gamma irradiation induced polymerization and crosslinking in solid state. Different morphology and distribution of CNT in fabricated and conventionally prepared composites were investigated by scanning and transmission electron microscopies. The interactions in the polymer matrix were elucidated by a broad dielectric spectroscopy. Importantly, the composite exhibited anisotropic electrical and mechanical properties studied by electrical conductivity measurement and dynamic mechanical analysis, respectively. Differences of two orders of magnitude in the electrical conductivity and 5 times higher storage modulus at 10−2Hz in the direction along and perpendicular to freezing in composite with 0.1% CNT in feed were observed. |
Sponsor | NPRP grant # NPRP-6-381-1-078 from the Qatar National Research Fund (a member of Qatar Foundation) |
Language | en |
Publisher | Elsevier, Ltd |
Subject | Directional freezing Gamma irradiation Carbon nanotubes Poly(acrylic acid) Anisotropic properties |
Type | Article |
Pagination | 300-306 |
Volume Number | 97 |
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