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C-13 NMR chemical shift of single-wall carbon nanotubes
Auteur(s): Latil Sylvain, Henrard L, Goze-Bac C., Bernier Patrick, Rubio A
(Article) Publié:
Physical Review Letters, vol. 86 p.3160-3163 (2001)
Texte intégral en Openaccess :
Ref HAL: hal-00657913_v1
PMID 11290132
DOI: 10.1103/PhysRevLett.86.3160
WoS: 000167866300062
Exporter : BibTex | endNote
56 Citations
Résumé: We compute the magnetic shielding tenser within the London approximation and estimate the Knight shift of single-wall carbon nanotubes. Our results indicate that high resolution C-13 NMR should be able to separate the metallic and insulator character of the nanotubes since a 11 ppm splitting is predicted from the respective resonances. As a model for disorder, bending, and defects in these structures, we investigate the magnetic response of nanotubes with finite size. We get a small line broadening coming from an intrinsic length dependent resonance effect. The nanotube packing is also studied and leads to a 20 ppm broadening which disappears under experimental high-resolution conditions.
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