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Combinatorica 28:645–658
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18. László I, Rassat A (2003) The geometric structure of deformed
nanotubes and the topological coordinates. J Chem Inf Comput
Sci 43:519–524
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thermal expansion of helically coiled carbon nanotubes. Phys
Status Solidi B 250:2535–2538
20. Dmitrovic S, Popovic ZP, Damnjanovic M et al (2013) Structural
model of semi-metallic carbon nanotubes. Phys Status Solidi B
250:2627–2630
21. Dmitrovic S, Popovic ZP, Damnjanovic M et al (2013) Strain
engineering of electronic band structure and optical absorption
spectra of helically coiled carbon nanotubes. J Nanoelect Optoelektr 8:160–164
79
Reprinted from the journal
1 3
13. László I, Graovac A, Pisanski T (2013) Drawing diamond structures with eigenvectors. In: Diudea MV, Nagy CL (eds) Carbon
materials chemistry and physics: diamond and related nanostructures. Springer, New York
14. László I (2013) Geometry of nanostructures and eigenvectors of
matrices. Phys Status Solidi B 250:2732–2736
15. Jackson B, Jordán T (2007) Rigid components in molecular
graphs. Algorithmica 48:399–412
16. Jackson B, Jordán T (2008) On the rigidity of molecular graphs.
Combinatorica 28:645–658
17. Brenner DW (1990) Empirical potentials for hydrocarbons for
use in simulating the chemical vapor deposition of diamond
fi lms. Phys Rev B 42:9458–9471
18. László I, Rassat A (2003) The geometric structure of deformed
nanotubes and the topological coordinates. J Chem Inf Comput
Sci 43:519–524
19. Popovic ZP, Damnjanovic M, Milosevic I (2013) Anisotropy of
thermal expansion of helically coiled carbon nanotubes. Phys
Status Solidi B 250:2535–2538
20. Dmitrovic S, Popovic ZP, Damnjanovic M et al (2013) Structural
model of semi-metallic carbon nanotubes. Phys Status Solidi B
250:2627–2630
21. Dmitrovic S, Popovic ZP, Damnjanovic M et al (2013) Strain
engineering of electronic band structure and optical absorption
spectra of helically coiled carbon nanotubes. J Nanoelect Optoelektr 8:160–164
79
Reprinted from the journal
