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Mathematical Modeling of Influence of Ion Size Effects in an Electrolyte in a Nanoslit with Overlapped EDL

机译:具有重叠EDL的纳米光电解质中离子尺寸效应影响的数学建模

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Many nanofluidic systems are being used in a wide range of applications due to advances in nanotechnology. Due to nanoscale size of the system, the physics involved in the electric double layer and consequently the different phenomena related to it are different than those at microscale. The Poisson-Boltzmann equation governing the electric double layer in the system has many shortcomings such as point sized ions. The inclusion of finite size of ions give rise to various electrokinetic phenomena. Electrocapillarity is one such phenomena where the size effect plays an important role. Theeffect of asymmetric finite ion sizes in nano-confinement in the view of osmotic pressure and electrocapillarity is analyzed. As the confinement width of the system becomes comparable with the Debye length, the overlapped electric double layer (EDL) is influenced and significantly deformed by the steric effects. The osmotic pressure from the modified Poisson-Boltzmann equation in nanoslit is obtained. Due to nonlinear nature of the modified PB equation, the solution is obtained through numerical method. Afterwards, the electrocapillarity due to the steric effect is analyzed under constant surface potential condition at the walls of the nanoslit along with the flat interface assumption.
机译:由于纳米技术的进展,许多纳米流体系统被用于广泛的应用中。由于系统的纳米级尺寸,所涉及的电双层的物理学以及与它相关的不同现象不同于Microscale。控制系统中的电双层的泊松 - Boltzmann方程具有许多缺点,例如点大小的离子。包含有限尺寸的离子产生各种电动现象。电覆细胞是一种这样的现象,尺寸效应起着重要作用。分析了非对称有限离子尺寸在渗透压和电覆细胞视图中纳米限制的影响。由于系统的限制宽度与德义长度相当,因此重叠的电双层(EDL)受到空间效应的影响和显着变形。获得了来自纳米溶液的改性泊松 - 玻璃板方程的渗透压。由于改性PB方程的非线性性质,通过数值方法获得溶液。然后,在纳米焊壁的恒定表面电位条件下分析由于空间效应引起的电覆细胞以及平面界面的假设。

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