A DFT study on the interaction of doped carbon nanotubes with H2S, SO2
and thiophene
Abstract
The interactions of simple and Al, B, N, S, P and Si-doped carbon
nanotubes with three sulfur-containing molecules (H2S, SO2 and
thiophene) have been investigated to assess their adsorption potencies
and sensor abilities. DFT calculations were used to calculate the
adsorption energies and NBO parameters. Besides, Population analyses
were performed to calculate the energy gaps and reactivity parameters
and to obtain DOS plots. The results showed an exothermic interaction of
H2S, SO2 and thiophene with simple and doped CNTs while the maximum
negative adsorption energies were belonged to Al and B containing
complexes. Furthermore, evaluation of second order perturbation energies
(obtained from NBO calculations) confirmed that the highest energies
were related to B and Al containing intramolecular interactions. The
results revealed the favourability of adsorption of SO2 by nanotubes (B
and Al doped carbon nanotubes, in particular), in comparing with the
other examined adsorbates.