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Molecular dynamics simulations oscillatory force

Recent molecular dynamics simulations of water between two surfactant (sodium dodecyl sulfate) layers, reported by Faraudo and Bresme,14 revealed oscillatory behaviors for both the polarization and the electric fields near a surface and that the two fields are not proportional to each other. While the nonmonotonic behavior again invalidated the Gruen—Marcelja model for the polarization, the nonproportionality suggested that a more complex dielectric response of water might, be at the origin of the hydration force. The latter conclusion was also supported by recent molecular dynamics simulations of Far audo and Bresme, who reported interactions between surfactant surfaces with a nonmonotonic dependence on distance.15... [Pg.487]

It was recently shown via molecular dynamics simulations14 that, in the close vicinity of a surface, water molecules exhibit an anomalous dielectric response, in which the local polarization is not proportional to the local electric field. The recent findings are also in agreement with earlier molecular dynamics simulations, which showed that the polarization of water oscillates in the vicinity of a dipolar surface,11,14 leading therefore to a nonmonotonic hydration force.15 Previous models for oscillatory hydration forces, based either on volume-excluded effects,18,19 or on a nonlocal dielectric constant,f4 predicted many oscillations with a periodicity of 2 A, which is inconsistent with these molecular dynamics simulations,11,18,14 in which the polarization exhibits only a few oscillations in the vicinity of the surface, with a larger periodicity. [Pg.493]

Tsige and Taylor s work on syndiotactic poly(methyl methacrylate) (68) indicated that atomistic molecular dynamic simulations can provide useful information about the nature of the glass transition in polymers via computational runs of modest size, especially if an uncomplicated force field is used in order to help reach the difiiisive regime with modest computational resources. It was also found that the subtraction of the oscillatory contribution to the motion is a useful tool for revealing the time variation of diffusive displacements. [Pg.553]


See other pages where Molecular dynamics simulations oscillatory force is mentioned: [Pg.109]    [Pg.595]    [Pg.177]    [Pg.201]    [Pg.277]    [Pg.23]    [Pg.115]    [Pg.382]    [Pg.13]    [Pg.383]   
See also in sourсe #XX -- [ Pg.15 , Pg.16 , Pg.17 , Pg.18 , Pg.19 ]




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