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Poly carbon nanotube composites

Goh HW, Goh SH, Xu GQ, Lee KY, Yang GY, Lee YW, Zhang WD (2003). Optical limiting properties of double-C60-end-capped poly(ethylene oxide), double-C -end-capped polyethylene oxide)/poly(ethylene oxide) blend, and double-C -end-capped poly(ethylene oxide)/multiwalled carbon nanotube composite. J. Phys. Chem. B 107 6056-6062. [Pg.216]

Kashiwagi T, Grulke E, Hilding J, Harris R, Awad W, Douglas J (2002). Thermal degradation and flammability properties of poly(propylene)/carbon nanotube composites. Macromol. Rapid Commun. 23 761-765. [Pg.217]

M. L. Minus, H. G. Chae, S. Kumar, Interfacial crystallization in gel-spun poly(vinyl alchohol) single-wall carbon nanotubes composite fibers, Macromol. Chem. Phys, vol. 210, pp. 1799-1808, 2009. [Pg.118]

Bhandari, S. Deepa, M. Srivastava, A. K. Joshi, A. G. Kant, R., Poly (3, 4-Ethylene-dioxythiophene)- multiwalled carbon nanotube composite films structure-directed amplified electrochromic response and improved redox activity./. Phys. Chem. B2009,113, 9416-9428. [Pg.471]

Keywords poly(vinyl) alcohol, carbon nanotubes, composite, processing, reinforcement, conductivity. [Pg.315]

Lota, K., Khomenko, V. and Frackowiak, E. (2004). Capacitance properties of poly(3,4-ethylenedioxythiophene)/carbon nanotubes composites J. Phys. Chem. Solids, 65, 295-301. [Pg.628]

Ahmad S (2009) Electropolymerization of poly(methyl pyrrole)/carbon nanotubes composites derived from ionic liquid. Polym Eng Sd 49 916-921... [Pg.429]

V. BavastreUo, S. Carrara, M. K. Ram, and C. Nicolini, Optical and electrochemical properties of poly(o-toluidine) multiwaUed carbon nanotubes composite Langmuir-Schaefer films, Langmuir, 20, 969-973 (2004). [Pg.251]

M. Baibarac, I. Baltog, and S. Lefrant, Raman spectroscopic evidence for interfacial interactions in poly(bithiophene)/single-walled carbon nanotube composites. Carbon, 47, 1389-1398 (2009). [Pg.259]

M. Baibarac, P. Gomez Romero, M. Lira Cantu, N. Casan Pastor, N. Mestres, and S. Lefrant, Electrosynthesis of the poly(V-vinyl carbazole)/carbon nanotubes composite for applications in the supercapacitors field, Eur. Polym. J., 42, 2302-2312 (2006). [Pg.259]

Kobashi, K., Villmow, T., Andres, T., Potschke, P. Liquid sensing of melt-processed poly(lactic acid)/multi-walled carbon nanotube composite films. Sens. Actuators, B 134, 787-795 (2008)... [Pg.396]

Rheological behaviour and mechanical characterization of injectable poly(propylene fumarate)/single-walled carbon nanotube composites for bone tissue exigineering. Nanotechnology, 16, S531-S538. [Pg.89]

Dash M. R, Tripathy M., Sasmal A, Gourang C., Mohanty C., and Nayak P. L., Poly anthranilic acid/multi-walled carbon nanotube composites spectral, morphological, and electrical properties,/ Mater. Sci, 2010, 45,3858-3865. [Pg.269]

Carbon nanotube composites from poly(ethylene) and PPS have been prepared by melt mixing [83]. The two types of carbon nanotube composites were compared with respect to their properties. Measurements of the electrical properties suggest an increase in homogeneous dispersion of the carbon nanotubes in the PPS matrix in comparison to poly(ethylene). This finding has been attributed to the increase in connectivity of the nanotube network structure of the composite. [Pg.140]

Han MS, Lee YK, Lee HS, Yun CH, Kim WN. Electrical, morphological and rheological properties of carbon nanotube composites with polyethylene and poly(phenylene sulhde) by melt mixing. Chem Eng Sci 2009 64(22) 4649-56. [Pg.150]

An YL, Zhang C, Yuan X, Hou QY. Preparahon of poly(phenylene sulhde)/carbon nanotubes composites. Adv Mater Res 2012 454 59-62. [Pg.150]

Zou Y, Yang J, Tang H, Zhong J, Zhao R, Liu X. Preparation and dielectric properties of poly(arylene ether nitrile) containing carboxyl groups/carbon nanotubes composites. J Mater Sci Mater Electron 2012 23(1) 206-11. [Pg.220]

Lota, K., V. Khomenko, and E. Frackowiak. 2004. Capacitance properties of poly(3,4-ethylenediox-ythiophene)/carbon nanotubes composites. J Phys Chem Solids 65 (2-3) 295. [Pg.1418]

Sarno, M., Gorrasi, G., Sannino, D., Sorrentino, A., Ciambelli, R, and Vittoria, V. 2004. Polymorphism and thermal behaviour of syndiotactic poly (propylene)/carbon nanotube composites. Macromolecular Rapid Communications 25 1963-1967. [Pg.263]

Wang, Z. J. Z. et al. Study on poly(methyl methacrylate)/carbon nanotube composites. Mater. Sci. Eng. A271, 395-400 (1999). [Pg.597]

Park S J, Cho M S, Lim ST, Choi H J and Jhon M S (2003) Synthesis and dispersion characteristics of multi-walled carbon nanotube composites with poly(methyl methacrylate) prepared by in situ bulk polymerization, Macromol Rapid Commun 24 1070-1073. [Pg.222]

Logakis E, Pandis G H, Peoglos V, Pissis P, Pionteck J, Potschke P, Micusil M and Omastova M (2009) Electrical/dielectric properties and conduction mechanism in melt-processed poly-amide/multi-walled carbon nanotubes composites, Polymer 50 5103-5111. [Pg.222]

Chen G X, Li Y and Shimizu H (2007) Ultrahigh-shear processing for the preparation of poly-mer/carbon nanotube composites, Carbon 45 2334-2340. [Pg.222]

Kim H S, Myung S J, Jung R and Jin H J (2008) Preparation and characterization of poly(p-phen-ylene terephthalamide) /multiwalled carbon nanotube composites via in situ polymerization, Mol Cryst Liq Cryst 492 384-391. [Pg.279]

Yesil S, Koysuren 0 and Bayram G (2010) Effect of microfiber reinforcement on the morphology, electrical, and mechanical properties of the polyethylene/poly(ethylene terephthalate)/carbon nanotube composites, Polym Eng Sci 50 2093-2105. [Pg.558]


See other pages where Poly carbon nanotube composites is mentioned: [Pg.237]    [Pg.298]    [Pg.684]    [Pg.345]    [Pg.386]    [Pg.153]    [Pg.465]    [Pg.130]    [Pg.209]    [Pg.15]    [Pg.188]    [Pg.221]   
See also in sourсe #XX -- [ Pg.229 , Pg.722 ]




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