Abstract. We have developed efficient numerical algorithms for solving 3D steady-state Poisson-Nernst-Planck (PNP) equations with excess chemical potentials described by the classical density functional theory (cDFT). The coupled PNP equations are dis-cretized by a finite difference scheme and solved iteratively using the Gummel method with relaxation. The Nernst-Planck equations are transformed into Laplace equa-tions through the Slotboom transformation. Then, the algebraic multigrid method is applied to efficiently solve the Poisson equation and the transformed Nernst-Planck equations. A novel strategy for calculating excess chemical potentials through fast Fourier transforms is proposed, which reduces computational complexity from O(N2) ...
In this paper we present parallel adaptive finite element algo-rithms for solving the 3D electro-dif...
Electrostatic interactions in molecular simulations are usually evaluated by employing the Ewald sum...
Electrostatic interactions in molecular simulations are usually evaluated by employing the Ewald sum...
In this work we present numerical methods that are suitable for studying a variety of electrochemica...
Ion transport between two baths of fixed ionic concentrations and applied electrostatic (ES) potenti...
Recent results of X-Ray crystallography have provided important information for functional studies o...
Recent results of X-Ray crystallography have provided important information for functional studies o...
Recent results of X-Ray crystallography have provided important information for functional studies o...
Single charge densities and the potential are used to describe models of electrochemical systems. Th...
A novel algorithmic scheme for numerical solution of the 3D Poisson-Nernst-Planck model is proposed....
The Poisson-Nernst-Planck equations are relevant in numerous electrobiochemical applications. In thi...
A numerical procedure based on the method of lines for time-dependent electrodiffusion transport has...
It is shown that the Poisson-Nernst-Planck (PNP) equations share many features with the well- known ...
It is shown that the Poisson-Nernst-Planck (PNP) equations share many features with the well- known ...
It is shown that the Poisson-Nernst-Planck (PNP) equations share many features with the well- known ...
In this paper we present parallel adaptive finite element algo-rithms for solving the 3D electro-dif...
Electrostatic interactions in molecular simulations are usually evaluated by employing the Ewald sum...
Electrostatic interactions in molecular simulations are usually evaluated by employing the Ewald sum...
In this work we present numerical methods that are suitable for studying a variety of electrochemica...
Ion transport between two baths of fixed ionic concentrations and applied electrostatic (ES) potenti...
Recent results of X-Ray crystallography have provided important information for functional studies o...
Recent results of X-Ray crystallography have provided important information for functional studies o...
Recent results of X-Ray crystallography have provided important information for functional studies o...
Single charge densities and the potential are used to describe models of electrochemical systems. Th...
A novel algorithmic scheme for numerical solution of the 3D Poisson-Nernst-Planck model is proposed....
The Poisson-Nernst-Planck equations are relevant in numerous electrobiochemical applications. In thi...
A numerical procedure based on the method of lines for time-dependent electrodiffusion transport has...
It is shown that the Poisson-Nernst-Planck (PNP) equations share many features with the well- known ...
It is shown that the Poisson-Nernst-Planck (PNP) equations share many features with the well- known ...
It is shown that the Poisson-Nernst-Planck (PNP) equations share many features with the well- known ...
In this paper we present parallel adaptive finite element algo-rithms for solving the 3D electro-dif...
Electrostatic interactions in molecular simulations are usually evaluated by employing the Ewald sum...
Electrostatic interactions in molecular simulations are usually evaluated by employing the Ewald sum...