Effect of charge density gradient on characteristics of electric double layer for salt melts
Николай Константинович Ткачев, Mikhail A. Kobelev
Abstract
Николай Константинович Ткачев, Mikhail A. Kobelev
Abstract
The equilibrium conditions are analyzed for a spatially inhomogeneous ionic liquid using the density functional theory with allowance made for the second order gradient corrections. Solutions for the distribution of potential and charge density in the electric double layer at the ionic liquid/vapor interface are obtained using a parameterized total density profile normal to the surface. It is shown that taking into account the effects of the charge density gradient in the theory results in the appearance of damped oscillations of the charge density near the surface, while the double layer localized on the surface is reduced.
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The equilibrium conditions are analyzed for a spatially inhomogeneous ionic liquid using the density functional theory with allowance made for the second order gradient corrections. Solutions for the distribution of potential and charge density in the electric double layer at the ionic liquid/vapor interface are obtained using a parameterized total density profile normal to the surface. It is shown that taking into account the effects of the charge density gradient in the theory results in the appearance of damped oscillations of the charge density near the surface, while the double layer localized on the surface is reduced.
Key concepts: Charge density, Allowance (engineering), Ionic potential, Double layer (biology), Density gradient, Chemistry, Potential gradient, Surface charge