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Numerical solution of the Poisson-Boltzmann equation for suspended charged particles surrounded by a charged permeable membrane

机译:带电可渗透膜包围的悬浮带电粒子的Poisson-Boltzmann方程的数值解

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The equilibrium properties of a charged spherical particle surrounded by a charged permeable membrane and immersed in electrolyte solutions have been investigated using the network simulation method. A network model for the nonlinear Poisson-Boltzmann equation describing the electrostatic potential distribution for this system has been proposed. With this model and an electric circuit simulation program, a series of functions such as the electric potential, the ion concentrations, and the charge densities inside the membrane and in the electrolyte solution can be easily obtained for arbitrary values of the particle radius, particle charge, membrane thickness, membrane charge, and ionic concentrations and charge number. The method proves to be quite general and extremely efficient, as well as applicable to a great variety of double layer compositions. [References: 32]
机译:使用网络模拟方法研究了被带电的可渗透膜包围并浸没在电解质溶液中的带电球形颗粒的平衡特性。提出了用于描述该系统静电势分布的非线性Poisson-Boltzmann方程的网络模型。利用该模型和电路仿真程序,对于任意的粒子半径,粒子电荷值,可以容易地获得膜内部以及电解质溶液中的电位,离子浓度,电荷密度等一系列功能。 ,膜厚度,膜电荷以及离子浓度和电荷数。该方法被证明是非常通用且极其有效的,并且适用于多种双层组合物。 [参考:32]

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