Water diffusion in carbon nanotubes for rigid and flexible models.
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2023
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We compared the diffusion of water confined in
armchair and zigzag carbon nanotubes for rigid and flexible water
models. Using one rigid model, TIP4P/2005, and two flexible
models, SPC/Fw and SPC/FH, we found that the number of the
hydrogen bonds that water forms depends on the structure of the
nanotube, directly affecting the diffusion of water. The simulation
results reveal that, due to the hydrophobic nature of carbon
nanotubes and the degrees of freedom imposed by the water force
fields, water molecules tend to avoid the surface of the carbon
nanotube. This junction of variables plays a central role in the
diffusion of water, mainly in narrow and/or deformed nanotubes,
governing the mobility of confined water in a nontrivial way, where
the greater the degree of freedom of the water force field, the
smaller mobility it will have in confinement as we limit the competition between area and volume and it no longer plays the unique
role in changing water diffusivity.
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MENDONÇA, B. H. da S. e et al. Water diffusion in carbon nanotubes for rigid and flexible models. The Journal of Physical Chemistry C, v. 127, p. 9769−9778, 2023. Disponível em: <https://pubs.acs.org/doi/full/10.1021/acs.jpcc.3c00490>. Acesso em: 06 jul. 2023.