C. Hartnig et al., MOLECULAR-DYNAMICS STUDY OF THE STRUCTURE AND DYNAMICS OF WATER IN CYLINDRICAL PORES, JOURNAL OF PHYSICAL CHEMISTRY B, 102(7), 1998, pp. 1241-1249
The structure and dynamics of confined water in cylindrical pores have
been investigated by molecular dynamics simulations. Both rigid (TIP4
P) and flexible (BJH) models have been used. Pore radii between 4.2 an
d 20 Angstrom have been studied; the pore walls are modeled either as
a smooth (10-4) Lennard-Jones wall or as a structured wall consisting
of (12-6) Lennard-Jones particles. Polar functional groups on the pore
surface are modeled by arrays of point charges. We present results on
density and orientational distribution functions and on the water mob
ility. We observe that water transport through nonpolar pores is fast
and dominated by the surface layer, whereas transport in polar pores i
s slowed down relative to bulk liquid water and occurs preferentially
through the center of the pore.