Ultrathin carbon nanotube with single, double, and triple bonds
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2012Metadata
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Menéndez Proupin, Eduardo
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Ultrathin carbon nanotube with single, double, and triple bonds
Abstract
A metastable carbon nanotube with single, double, and triple bonds has been predicted from abinitio simulation. It results from the relaxation of an ideal carbon nanotube with chirality (2,1), without any potential barrier between the ideal nanotube and the new structure. Ten-membered carbon rings are formed by breaking carbon bonds between adjacent hexagons; eight-membered rings, already present in the ideal structure, become the smallest rings. This structure is stable in molecular dynamics simulations at temperatures up to 1000K. Raman, infrared, and optical absorption spectra are simulated to allow its identification in the laboratory. The structure can be described as a double helical chain with alternating single, double, and triple bonds, where the chains are bridged by single bonds. © 2012 American Physical Society.
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URI: https://repositorio.uchile.cl/handle/2250/154974
DOI: 10.1103/PhysRevLett.109.105501
ISSN: 00319007
10797114
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Physical Review Letters, Volumen 109, Issue 10, 2018,
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