C. Bekas, Alessandro Curioni
Computer Physics Communications
Density-functional-theory based calculations of two single-walled carbon nanotubes of different chirality settle open issues on the sidewall chemisorption of atomic oxygen at low concentrations. Ether groups are the thermodynamically favored configurations. If kinetically trapped in epoxide groups, oxygen introduces characteristic new levels in the gap of the nanotube that are detected with scanning tunneling spectroscopy experiments. Discrepancies with previous predictions are shown to originate from the inadequacy of previous models to describe low-concentration oxygen adsorbated on nanotubes. © 2013 American Chemical Society.
C. Bekas, Alessandro Curioni
Computer Physics Communications
Federico Zipoli, Alessandro Curioni
New Journal of Physics
Diego Rossinelli, Babak Hejazialhosseini, et al.
SC 2013
Valéry Weber, Teodoro Laino, et al.
Journal of Physical Chemistry C