Molecular dynamics simulation of liquid water confined inside graphite channels:: Dielectric and dynamical properties

被引:72
|
作者
Marti, J.
Nagy, G.
Guardia, E.
Gordillo, M. C.
机构
[1] Univ Politecn Cataluna, Dept Fis Engn Nucl, ES-08034 Barcelona, Catalonia, Spain
[2] KFKI Atom Energy Res Inst, Dept Mat, H-1525 Budapest, Hungary
[3] Univ Pablo Olavide, Fac Ciencias Expt, Dept Sistemas Fis Quim & Nat, Seville, Spain
来源
JOURNAL OF PHYSICAL CHEMISTRY B | 2006年 / 110卷 / 47期
关键词
D O I
10.1021/jp0647277
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Electric and dielectric properties and microscopic dynamics of liquid water confined between graphite slabs are analyzed by means of molecular dynamics simulations for several graphite-graphite separations at ambient conditions. The electric potential across the interface shows oscillations due to water layering, and the overall potential drop is about -0.28 V. The total dielectric constant is larger than the corresponding value for the bulklike internal region of the system. This is mainly due to the preferential orientations of water nearest the graphite walls. Estimation of the capacitance of the system is reported, indicating large variations for the different adsorption layers. The main trend observed concerning water diffusion is 2-fold: on one hand, the overall diffusion of water is markedly smaller for the closest graphite-graphite separations, and on the other hand, water molecules diffuse in interfaces slightly slower than those in the bulklike internal areas. Molecular reorientational times are generally larger than those corresponding to those of unconstrained bulk water. The analysis of spectral densities revealed significant spectral shifts, compared to the bands in unconstrained water, in different frequency regions, and associated to confinement effects. These findings are important because of the scarce information available from experimental, theoretical, and computer simulation research into the dielectric and dynamical properties of confined water.
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页码:23987 / 23994
页数:8
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