Numerical Solution of 3D Poisson-Nernst-Planck Equations Coupled with Classical Density Functional Theory for Modeling Ion and Electron Transport in a Confined Environment

Type: Article

Publication Date: 2014-11-01

Citations: 51

DOI: https://doi.org/10.4208/cicp.040913.120514a

Abstract

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 discretized by a finite difference scheme and solved iteratively using the Gummel method with relaxation. The Nernst-Planck equations are transformed into Laplace equations 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 ( N 2 ) to O ( N log N ), where N is the number of grid points. Integrals involving the Dirac delta function are evaluated directly by coordinate transformation, which yields more accurate results compared to applying numerical quadrature to an approximated delta function. Numerical results for ion and electron transport in solid electrolyte for lithiumion (Li-ion) batteries are shown to be in good agreement with the experimental data and the results from previous studies.

Locations

  • Communications in Computational Physics - View
  • arXiv (Cornell University) - View - PDF
  • DataCite API - View

Similar Works

Action Title Year Authors
+ PDF Chat Modeling Concentration Profiles in Electrolytes by Solving 3-D Poisson-Nernst-Planck Equations via Finite Difference Method 2025 Yitao He
D. L. Zhao
+ Self-energy modified Poisson-Nernst-Planck equations: WKB and finite-difference approaches 2014 Zhenli Xu
Manman Ma
Pei Liu
+ Fast Algorithms for Finite Element nonlinear Discrete Systems to Solve the PNP Equations 2023 Yang Liu
Shi Shu
Ying Yang
+ PDF Chat Finite element method for the numerical simulation of modified Poisson-Nernst-Planck/Navier-Stokes model 2024 Ankur
Ram Jiwari
Satyvir Singh
+ A Decoupling Two-grid Method for the Time-dependent Poisson-Nernst-Planck Equations 2018 Ruigang Shen
Shi Shu
Ying Yang
Benzhuo Lu
+ PDF Chat An iteration solver for the Poisson–Nernst–Planck system and its convergence analysis 2021 Chun Liu
Cheng Wang
Steven M. Wise
Xingye Yue
Shenggao Zhou
+ PDF Chat A Maxwell–Ampère Nernst–Planck Framework for Modeling Charge Dynamics 2023 Zhonghua Qiao
Zhenli Xu
Qian Yin
Shenggao Zhou
+ A Two-grid Method for Linearizing and Symmetrizing the Steady-state Poisson-Nernst-Planck Equations 2017 Xuefang Li
Ying Yang
Hang Cheng
+ Second-order, Positive, and Unconditional Energy Dissipative Scheme for Modified Poisson-Nernst-Planck Equations 2023 Jie Ding
Shenggao Zhou
+ Integral equation method for the 1D steady-state Poisson-Nernst-Planck equations 2023 Zhen Chao
Weihua Geng
Robert Krasny
+ Discrete unified gas kinetic scheme for the solution of electron Boltzmann transport equation with Callaway approximation 2023 Meng Lian
Chuang Zhang
Zhaoli Guo
Jing‐Tao Lü
+ PDF Chat Second-order, Positive, and Unconditional Energy Dissipative Scheme for Modified Poisson–Nernst–Planck Equations 2024 Jie Ding
Shenggao Zhou
+ A fast solver for the pseudo-two-dimensional model of lithium-ion batteries 2021 Rachel Han
Colin B. Macdonald
Brian Wetton
+ PDF Chat A fast solver for the pseudo-two-dimensional model of lithium-ion batteries 2021 Rachel Han
Colin Macdonald
Brian Wetton
+ PDF Chat Discrete unified gas kinetic scheme for the solution of electron Boltzmann transport equation with Callaway approximation 2024 M. Lian
Chuang Zhang
Zhaoli Guo
Jing‐Tao Lü
+ PDF Chat Self-energy-modified Poisson-Nernst-Planck equations: WKB approximation and finite-difference approaches 2014 Zhenli Xu
Manman Ma
Pei Liu
+ A Decoupling Two-Grid Method for the Steady-State Poisson-Nernst-Planck Equations 2016 Ying Yang
Benzhuo Lu
Yan Xie
+ A Maxwell-Ampère Nernst-Planck Framework for Modeling Charge Dynamics 2022 Zhonghua Qiao
Zhenli Xu
Qian Yin
Shenggao Zhou
+ A Numerical Framework for Concentrated-Solution Theory 2020 Alexander Van–Brunt
Patrick E. Farrell
Charles W. Monroe
+ PDF Chat A Structure-Preserving JKO Scheme for the SizeModified Poisson-Nernst-Planck-Cahn-Hilliard Equations 2023 Jie Ding null
Ji Xiang

Works That Cite This (19)

Action Title Year Authors
+ PDF Chat A Local Approximation of Fundamental Measure Theory Incorporated into Three Dimensional Poisson–Nernst–Planck Equations to Account for Hard Sphere Repulsion Among Ions 2016 Yu Qiao
Xuejiao Liu
Minxin Chen
Benzhuo Lu
+ Positivity-preserving third order DG schemes for Poisson--Nernst--Planck equations 2021 Hailiang Liu
Zhongming Wang
Peimeng Yin
Hui Yu
+ PDF Chat Positivity-preserving third order DG schemes for Poisson–Nernst–Planck equations 2021 Hailiang Liu
Zhongming Wang
Peimeng Yin
H.-B Yu
+ PDF Chat Improvements in continuum modeling for biomolecular systems 2016 Yu Qiao
Benzhuo Lu
+ PDF Chat Regulation of the Reaction between Cytochrome c and Cytochrome Oxidase 2016 Jennifer Silva‐Nash
Francis Millett
Martha Scharlau
+ PDF Chat Structure-preserving and efficient numerical methods for ion transport 2020 Jie Ding
Zhongming Wang
Shenggao Zhou
+ PDF Chat Modeling transport of charged species in pore networks: Solution of the Nernst–Planck equations coupled with fluid flow and charge conservation equations 2020 Mehrez Agnaou
Mohammad Amin Sadeghi
Thomas G. Tranter
Jeff T. Gostick
+ PDF Chat The Role of Correlation and Solvation in Ion Interactions with B-DNA 2016 Maria L. Sushko
Dennis Thomas
Suzette A. Pabit
Lois Pollack
Alexey V. Onufriev
Nathan Baker
+ PDF Chat A Review of Mathematical Modeling, Simulation and Analysis of Membrane Channel Charge Transport ☆ 2017 Duan Chen
Guo‐Wei Wei
+ PDF Chat A simple quantitative model of neuromodulation, Part I: Ion flow through neural ion channels 2023 Linda Werneck
Mertcan Han
Erdost YÄąldÄąz
Marc‐André Keip
Metin Sitti
M. OrtĂ­z