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Multiwalled carbon nanotubes 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]

P. Lemoine, J. P. Quinn, Polyethylene multiwalled carbon nanotube composites, Polymer, vol. 46, p. 8222-8232, 2005. [Pg.117]

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]

Abdel-Goad M, Potschke P (2005) Rheological characterization of melt processed polycarbonate-multiwalled carbon nanotube composites. J Non-Newtonian Fluid Mech 128 2-6... [Pg.252]

Zhang H, Wang ZG, Zhang ZN et al (2007) Regenerated-ceUulose/multiwalled-carbon-nanotube composite fibers with enhanced mechanical properties prepared with the ionic liquid l-allyl-3-methylimidazolium chloride. Adv Mater 19 698-704... [Pg.431]

G. Han, J. Yuan, G. Shi, and E. Wei. Electrodeposition of polypyrrole/multiwalled carbon nanotube composite films, Thin Solid Films, 474, 64—69 (2005). [Pg.525]

Whi White, K. L., Sue, H.-J. Electrical conductivity and fracture behavior of epoxy/polyamide-12/ multiwalled carbon nanotube composites. Polym. Eng. Sci. 51 (2011) 2245-2253. [Pg.556]

IlWhi White, K. L., Sue, H.-J. Electrical conductivity and fracture behavior of epoxy/polyamide-12/ multiwalled carbon nanotube composites. Polym. Eng. Sci. 51 (2011) 2245-2253. llZha Zhang, G., Rasheva, Z., Karger-Kocsis, J., Burkhart, T. Synergetic role of nanoparticles and micro-scale short carbon fibers on the mechanical profiles of epoxy resin. eXPRESS Polym. Lett. 5 (2011) 859-872. [Pg.589]

Electrochemical immobilization of ascorbate oxidase in poty(3,4-ethylenedio5q4 hiophene)/multiwalled carbon nanotubes composite films,/. Appl. Polym. Sci., 122, pp. 1142-1151. [Pg.462]

Lian, W, Liu, S., Yu, J., Li, J., Cui, M., Xu, W, and Huang, J. [2013]. Electrochemical sensor using neomycin-imprinted film as recognition element based on chitosan-silver nanoparticles/graphene-multiwalled carbon nanotubes composites modified electrode. Biosens. Bioelectron., 44, pp. 70-76. [Pg.470]

L. Qiu, Y. Yang, L. Xu, and X. Liu, Influence of surface modification of carbon nanotube on microstructures and properties of polyamide 66/multiwalled carbon nanotube composites. Polymer Composites, 34 (5), 656-664, 2013. [Pg.392]

Xiao, Y, Zhang, X., Cao, W., Wang, K., Tan, H., Zhang, Q. et al. 2007. Dispersion and mechanical properties of polypropylene/ multiwall carbon nanotubes composites obtained via dynamic packing injection molding. Journal of Applied Polymer Science 104 1880-1886. [Pg.261]

Potschke P, Brunig H, Janke A, Fischer D and Jehnichen D (2005) Orientation of multiwalled carbon nanotubes in composites with polycarbonate by melt spinning, Pol(/mer 46 10355-10363. McNally T, Potschke P, Halley P, Murphy M, Martin D, Bell S E J, Brennan G P, Bein D, Lemoine P and Quinn J P (2005) Polyethylene multiwalled carbon nanotube composites, Polymer 46 8222-8232. [Pg.189]

Potschke P, Abdel-Goad M, Alig I, Dudkin S and Bellinger D (2004) Rheological and dielectrical characterization of melt mixed polycarbonate-multiwalled carbon nanotube composites. Polymer 45 8863-8870. [Pg.190]

Liang G D and Tjong S C (2006) Electrical properties of low-density polyethylene/multiwalled carbon nanotube composites. Mater Chem Phys 100 132-137. [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]

Umasankar Y, Shie J-W, Chen S-M. Electrocatalytic activity of oxygen and hydrogen peroxide reduction at Poly(iron tetra(o-aminophenyl)porphyrin) coated multiwalled carbon nanotube composite film. J Electrochem Soc 2009 156 K238—44. [Pg.513]

Incorporation of 0.5% to 5% of high-density polyethylene and multiwalled carbon nanotube composites improves Young s modulus from 0.4 to 0.56 GPa, yield stress from 16.34 to 19.02 MPa, and consumed energy up to 7% strain from 4729 to... [Pg.66]

Meizougui B, Hachimi A, Akinpelu A, Bukola S, Shao M (2013) A Pt free catalyst for oxygen reduction reaction based on Fe—N multiwalled carbon nanotube composites. Eleetrochim Acta 107 126-132... [Pg.100]

Wu T-M, Lin S-H (2006) Characterization and electrical properties of polypyrrole/ multiwalled carbon nanotube composites synthesized by in situ chemical oxidative polymerization. J Polym Sci Pol Phys 44 1413-1418... [Pg.572]

Stephan, C. Nguyen, T.P. Lahr, B. Blau, W. Lefrant, S. Chauvet, O. Raman spectroscopy and conductivity measurements on polsmer-multiwalled carbon nanotubes composites. J. Mater. Res. 2002, 17, 396-400. [Pg.323]

Guo S, Zhang C, Wang W et al (2008) Preparation and characterization of polyurethane/ multiwalled carbon nanotube composites. Polym Polym Compos 16 471-478... [Pg.40]

Li Y, Shimizu H (2009) Toward a stretchable, elastic, and electrically conductive nanocomposite morphology and properties of poly[styrene-h-(ethylene-co-butylene)-h-styrenej/multiwalled carbon nanotube composites fabricated by high-shear processing. Macromolecules 42 2587-2593... [Pg.41]

McNally Pbtschke, R, Halley, R, Murphy, M. etal. (2005) Rolyethylene multiwalled carbon nanotube composites. Polymer, 46, 8222. [Pg.258]

Kwon, J., Kim, H. (2005), Comparison of the properties of waterborne polyurethane/ multiwalled carbon nanotube and acid-treated multiwalled carbon nanotube composites prepared by in situ polymerization. Journal of Polymer Science Part A Polymer Chemistry, 43, 973—85. [Pg.254]

Evingur, G.A., Pekcan, O., 2012. Elastic percolation of swollen polyacrylamide (PAAm)-multiwall carbon nanotubes composite. Phase Transitions 85, 553—564. [Pg.540]

Jin Z, Sun X, Xu G, Goh SH, Ji W. Nonlinear optical properties of some polymer/multiwalled carbon nanotube composites. Chem Phys Lett 2000 318 505-510. [Pg.389]

McNally T, Potschkeb P, Halley P, Murphy M, Martin D, Bell SEJ, et al. Polyethylene multiwalled carbon nanotube composites. Polymer 2005 46 8222-8232. [Pg.394]

Xi Y, Yamanaka A, Bin Y, Matsuo M. Electrical properties of segregated ultrahigh molecular weight polyethylene/multiwalled carbon nanotube composites. JAppl Polym Sci 2007 105(5) 2868—76. [Pg.258]

H. Teymourian, A. Salimi, R. Hallaj, Low potential detection of NADH based on Fc304 nanoparticles/multiwalled carbon nanotubes composite Fabrication of integrated dehydrogenase-based lactate biosensor. Biosens. Bioelectron. 33 (2012) 60-68. [Pg.143]

Rizvi R, Khan O, Naguib HE. Development and characterization of solid and porous polylactide-multiwall carbon nanotube composites. Polym Eng Sci 2011 51 43-53. [Pg.96]

Pbtschke, P., Pomes, T.D., Paul, D.R. Rheological behavior of multiwalled carbon nanotube/polycarbonate composites . Polymer 43(11) (2002) 3247-3255 Pbtschke, P., Dudkin, S.M., Ahg, I. Dielectric spectroscopy on melt processed polycarbonate-multiwalled carbon nanotube composites . Polymer 44(11) (2003), 5023-5030... [Pg.227]

Potschke, R, Abdel-Goad, M., Alig, L, Dudkin, S., Lellinger, D. Rheological and dielectrical characterization of melt mixed polycarbonate-multiwalled carbon nanotube composites , Polymer 45(26) (2004), 8863-8870 McNally, T., Potschke, R, Halley, R, Murphy, M., Martin, D., Bell, S.E.J., Brennan, G.R, Bein, D., Lemoine, R, Quinn, J.R Polyethylene multiwalled carbon nanotube composites , Polymer ( 9) (2005), 8222-8232... [Pg.232]

Ezat GS, Kelly AL, Mitchell SC, Youseffi M, Coates PD (2012) Effect of maleic anhydride grafted polypropylene compatibilizer on the morphology and properties of polypropylene/multiwalled carbon nanotube composite. Polym Compos 33 1376... [Pg.38]

Nickel was electrodeposited on polished brass foil at different temperatures (Ni deposit roughness with temperature). Also, Martis et a/. reported that compact nickel multiwalled carbon nanotube composites eould be electrodeposited on a copper substrate using the eutectic mixture ChCl/EG as solvent. Later, electrodeposition of Ni-P alloys (with tunable phosphorous eontent) at room temperature was reported by You and co-workers. ... [Pg.729]

Poetschke P, Dudkin S M and Alig I (2003) Dielectric spectroscopy on melt processed polycarbonate-multiwalled carbon nanotube composites, Polymer 44 5023-5030. Kramarenko V Y, Shantalii T A, Karpova I L, Dragan K S, Privalko E G, Privalko V P, Pragiadakis D and Pissis P (2004) Polyimides reinforced with the sol-gel derived organosilicon nanophase as low dielectric permittivity materials, Polym Adv Technol 15 144-148. [Pg.434]

To improve proton transport of PFSA membranes at high temperatures and in order to operate PFSA membranes at temperatures above 100°C, inorganic compounds such as Si02 and Ti02 were employed as additives to retain water in the Naflon membranes for an acceptable proton conductivity. Proton conductors such as zirconium phosphate, heteropolyacid/ and heterocycle compounds including imidazole,benzimidazole, triazole, and polyfunctional phosphonic acid were also added in the Naflon membrane. In addition, ionic liquids were applied to fabricate composite Naflon membranes due to their anhydrous high conductivity and good thermal stability. Besides, Naflon/Naflon-functionalized multiwalled carbon nanotube composite membrane exhibits a remarkable improvement in proton conductivity compared to the pristine Naflon membrane. ... [Pg.83]

Yang J, Wang C, Wang K, Zhang Q, Chen F, Du R, Fu Q (2009) Direct formation of nanohybrid shish-kebab in the injection molded bar of polyethylene/multiwalled carbon nanotubes composite. Macromolecules 42(18) 7016-7023... [Pg.248]


See other pages where Multiwalled carbon nanotubes composites is mentioned: [Pg.509]    [Pg.261]    [Pg.142]    [Pg.62]    [Pg.68]    [Pg.208]    [Pg.122]    [Pg.225]   
See also in sourсe #XX -- [ Pg.205 ]




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Multiwall carbon nanotubes

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