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JOURNALS // Nanosystems: Physics, Chemistry, Mathematics // Archive

Nanosystems: Physics, Chemistry, Mathematics, 2023 Volume 14, Issue 4, Pages 428–437 (Mi nano1208)

PHYSICS

The Space Charge Model. A new analytical approximation solution of Poisson–Boltzmann equation: the extended homogeneous approximation

Jalal Dweik, Hassan Farhat, Joumana Younis

Jinan University, Tripoli, Lebanon

Abstract: The validity of different analytical approximations solution is studied using the classical Poisson–Boltzmann (PB) equation based on a mean-field description of ions as ideal point charges in combination with the assumption of fully overlapped electrical double layers in the membrane pores. The electrical conductivity is calculated by numerical and approximate analytical methods in order to explain the process of ion transport. In this paper, a new analytical approximation named the extended homogeneous approximation (EH) is presented, which provides better results than the homogeneous approximation based on Donnan theory. Also, the results show that the electrical conductivity calculated by the EH, is coherent with the numerical method within specific limits.

Keywords: space charge model, Poisson–Boltzmann (PB) equation, electrical conductivity, extended homogeneous (EH) approximation.

Received: 04.07.2023
Revised: 25.07.2023
Accepted: 28.07.2023

Language: English

DOI: 10.17586/2220-8054-2023-14-4-428-437



© Steklov Math. Inst. of RAS, 2024