Structure and mechanical properties of fluorinated carbon nanotubes
Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika, no. 7 (2012), pp. 191-194 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

Structure and mechanical properties of complexes consisting of carbon nanotubes adsorbed on their outer surface small content of fluorine atoms are studied by methods of quantum-chemical modeling. Possibility of fluorine ordered chain structures that arise in the final stages of fluorination of carbon nanotubes is discussed.
Mots-clés : carbon nanotubes
Keywords: halogenation, fluorination, mechanical properties, density functional theory.
@article{VYURM_2012_7_a31,
     author = {K. A. Telnoy and S. A. Sozykin and V. P. Beskachko},
     title = {Structure and mechanical properties of fluorinated carbon nanotubes},
     journal = {Vestnik \^U\v{z}no-Uralʹskogo gosudarstvennogo universiteta. Seri\^a, Matematika, mehanika, fizika},
     pages = {191--194},
     year = {2012},
     number = {7},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/VYURM_2012_7_a31/}
}
TY  - JOUR
AU  - K. A. Telnoy
AU  - S. A. Sozykin
AU  - V. P. Beskachko
TI  - Structure and mechanical properties of fluorinated carbon nanotubes
JO  - Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika
PY  - 2012
SP  - 191
EP  - 194
IS  - 7
UR  - http://geodesic.mathdoc.fr/item/VYURM_2012_7_a31/
LA  - ru
ID  - VYURM_2012_7_a31
ER  - 
%0 Journal Article
%A K. A. Telnoy
%A S. A. Sozykin
%A V. P. Beskachko
%T Structure and mechanical properties of fluorinated carbon nanotubes
%J Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika
%D 2012
%P 191-194
%N 7
%U http://geodesic.mathdoc.fr/item/VYURM_2012_7_a31/
%G ru
%F VYURM_2012_7_a31
K. A. Telnoy; S. A. Sozykin; V. P. Beskachko. Structure and mechanical properties of fluorinated carbon nanotubes. Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika, no. 7 (2012), pp. 191-194. http://geodesic.mathdoc.fr/item/VYURM_2012_7_a31/

[1] M. R. Nyden, S. I. Stoliarov, “Calculations of the energy of mixing carbon nanotubes with polymers”, Polymer, 49 (2008), 635–541 | DOI

[2] Vl. A. Margulisa, E. E. Muryumin, “Chemisorption of single fluorine atoms on the surface of zigzag single-walled carbon nanotubes: A model calculation”, Physica B, 390 (2007), 134–142 | DOI

[3] H. F. Bettinger, “Experimental and computational investigations of the properties of fluorinated single-walled carbon nanotubes”, Physical Chemistry, 4 (2003), 1283–1289

[4] K. N. Kudin, H. F. Bettinger, G. E. Scuseria, “Fluorinated single-wall carbon nanotubes”, Physical Reviev B, 63 (2001), 045413 | DOI

[5] C. P. Ewels, G. V. Lier, J.-C. Charlier et al., “Pattern formation on carbon nanotube surfaces”, Physical Review Letters, 96 (2006), 216103 | DOI

[6] Beskachko V. P., Sozykin S. A., Sokolova E. R., “The mechanical properties of single-walled carbon nanotubes”, All materials. Encyclopedic Handbook, 2010, no. 7, 19–23

[7] Alex A. Granovsky, Firefly version 7.1.G, http://classic.chem.msu.su/gran/firefly/index.html

[8] H. Pan, Y. P. Feng, J. Y. Lin, “Ab initio study of F- and Cl-functionalized single wall carbon nanotubes”, Journal of Physics: Condenced Matter, 18 (2006), 5175–5184 | DOI

[9] Sozykin S. A., Beskachko V. P., “Interaction of carbon nanotubes (7,7) and (8,8) with embedded atoms”, Vestnik YuUrGU. Seriia «Matematika. Mekhanika. Fizika», 9(185):2 (2010), 87–91 (in Russ.)

[10] K. Asaka, T. Kizuka, “Atomistic dynamics of deformation, fracture, and joining of individual single-walled carbon nanotubes”, Physical review B, 72 (2005), 115431 | DOI

[11] K. Tserpes, P. Papanikos, “Finite element modeling of single-walled carbon nanotubes”, Composites: Part B, 36 (2005), 468–477 | DOI