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MD Study of Solution Concentrations on Ion Distribution in a Nanopore-Based Device Inspired from Red Blood Cells

机译:MD溶液浓度对红细胞启发的基于纳米孔的装置中离子分布的研究

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摘要

A molecular dynamics model of a nanopore-based device, which is similar to the nanopores in a cell membrane, was used to determine the influence of solution concentration on radial ion distribution, screening effects, and the radial potential profile in the nanopore. Results from these simulations indicate that as the solution concentration increases, the density peaks for both the counterion and coion near the charged wall increase at different speeds as screening effects appeared. Consequently, the potential near the charged wall of the nanopore changed from negative to positive during the simulation. The detailed understanding of ion distribution in nanopores is important for controlling the ion permeability and improving the cell transfection and also the design and application of nanofluidic devices.
机译:与细胞膜中的纳米孔相似,基于纳米孔的装置的分子动力学模型用于确定溶液浓度对纳米孔中径向离子分布,屏蔽效应和径向电位分布的影响。这些模拟的结果表明,随着溶液浓度的增加,带电壁附近的抗衡离子和co离子的密度峰会随着出现屏蔽效应而以不同的速度增加。因此,在模拟过程中,纳米孔带电壁附近的电势从负变为正。对纳米孔中离子分布的详细了解对于控制离子渗透性和改善细胞转染以及纳米流体装置的设计和应用非常重要。

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