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Single-walled caibon nanotubes

Moonoosawmy KR, Kruse P (2008) To dope or not to dope the effect of sonicating single-wall caibon nanotubes in common laboratory solvents on their electronic structure. J Am Chem Soc 130 13417-13424... [Pg.428]

J. H. Kang and J. K. Park, Magnetophoretic continuous purification of single-walled caibon nanotubes from catalytic impurities in a microfluidic device. Small, vol. 3, no. 10, pp. 1784-1791, Oct. 2007. [Pg.363]

Wang P, Moorefield CN, lie S, Hwang S-H, Shredner CD, Newkome GR (2006) TerpyridineCuII-mediated reversible nanocomposites of single-wall caibon nanotubes towards metallo-nanoscale architectures. Chem Commun 10 1091-1093... [Pg.381]

Ajayan, P.M., Schadler, L.S., Giemnaris, C., Rubio, A. Single-walled caibon nanotube-poly-mer composites strength and weakness. Adv. Mater. 12(10), 750-753 (2000)... [Pg.56]

Mao H, Kawazoe N, Chen G (2014) Cellular uptake of single-walled caibon nanotubes in 3D extracellular matrix-mimetic composite collagen hydrogels. J Nanosci Nanotechnol 14 (3) 2487-2492... [Pg.204]

Martin R, Jimenez LB, Alvaro M, Scaiano JC, Garcia H (2009) Photoinduced formation and characterization of electron-hole pairs in azaxanthylium-derivatized short single-walled caibon nanotubes. Chem Eur J 15(35) 8751-8759... [Pg.204]

Matthew JK, Virginia AD (2009) Viscoelasticity and shear stability of single-walled caibon nanotube/unsaturated polyester resin dispersions. Macromolecules 42(17) 6624—6632 Mehta H, Wangshul H, Kanagaraj S (2011) Studies on mechanical properties of carbon nanotubes/ high-density polyethylene nanocomposites by small punch technique. Int J Nanosci 10(1-2) 247-251... [Pg.204]

Kymakis E, Alexandou I, Amaiatunga GAG (2002) Single- walled caibon nanotube- polymer composites electrical optical and stmctmal Investigations. Synth Met 127 50-62 Lamba NM, Woodhouse KA, Coopa- SL (1998) Polyurethanes in biomedical applications. CRC Press, Boca Raton, EL... [Pg.509]

Geraldo DA, Togo CA, Limson J, Nyokong T (2008) Electrooxidation of hydrazine catalyzed by noncovalently functionalized single-walled caibon nanotubes with CoPc. Electrochim Acta 53 8051-8057... [Pg.224]

N. Anderson, A. Hartschuh, S. Cronin, L. Novotny, Nanoscale vibrational tmtilysis of single-walled caibon nanotubes. J. Am. Chem. Soc. 127,2533-2537 (2005)... [Pg.157]

Hermant M-C, van der Schoot P, Klumperman B, Koning CE (2010) Probing the cooperative nature of the conductive components in polystyrene/poly (3, 4-ethylenedioxythiophene) poly (styrene sulfonate) single-walled caibon nanotube composites. ACS Nano 4 2242... [Pg.40]

Bobadilla AD, Samuel ELG, Tour JM, Seminario JM (2013) Calculating the hydrodynamic volume of poly(ethylene oxylated) single-walled carbon nanotubes and hydrophilic caibon clusters. J Phys Chem B 117 343-354... [Pg.232]

Mases M, Noe M, Mercier G, Dossot M, Vigolo B, Mamane V, Fort Y, Soldatov AV, McRae E (2011) Effects on Raman spectra of functionalisation of single walled carbon nanotubes by nitric acid. Phys Status Solidi (B) Basic Res 248(11) 2552-2555 Masinga SP, Nxumalo EN, Mamba BB, Mhlanga SD (2013) Microwave-induced synthesis of p-cyclodextrin/N-doped caibon nanombe polyurethane nanocomposites for water purification. Phys Chem Earth... [Pg.204]

Wang J, Li M, Shi Z, Li N, Gu Z (2(K)2) Direct electrochemistry of cytochrome-c at a glassy-caibon eleetrode modified with single-wall eaibon nanotubes. Anal Chem 74 1993-1997... [Pg.316]

Carbon nanotubes are a new allotropic form of caibon and possess interesting physicochemical properties. Their chance discovery was a result of an enormous interest in fullerenes. Carbon nanotubes are built of graphene layers and can assume single- or multi-wallet structures [23,25,35]. Chemical modifications of nanotubes in both open terminated areas and on outer and inner walls create many possibilities. Prospective and present applications of nanotubes depend on their physicochemical properties, such as density, resistance to stretching and bending, thermal and electrical conductivity, field emission, as well as resistance to temperature. Good adsorption properties of nanocarbon materials contribute to their extensive practical application. [Pg.349]


See other pages where Single-walled caibon nanotubes is mentioned: [Pg.57]    [Pg.211]    [Pg.252]    [Pg.178]    [Pg.57]    [Pg.211]    [Pg.252]    [Pg.178]    [Pg.91]    [Pg.140]    [Pg.920]    [Pg.196]   
See also in sourсe #XX -- [ Pg.87 , Pg.88 ]




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