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Brownian Dynamics Simulation of a Spherical Particle in Charged Gel Modeled as Cubic Lattice

机译:立方晶格带电凝胶中球形颗粒的布朗动力学模拟

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摘要

Self-diffusion of a tracer particle in an electrically non-charged and charged cubic lattice with the hard-body type excluded-volume effect as a simplified structure of cross-linked network of gel is investigated by Brownian dynamics simulation. Both the excluded-volume and the electrostatic attractive interaction acting between the tracer particle and the cubic lattice result i the reduction in the self-diffusion coefficient as compared to that for the free diffusion. Reduction caused by the electrostatic attractive interaction is significant when d_p/d_lattice1 and d_p/d_lattice approx 1, where d_lattice and d_p denote the mesh size of the cubic lattice and diameter of the tracer particle, respectively. When d_p/d_lattice1, the reduction in the self-diffusion coefficient is mainly due to entrapment around the charged points on the cubic lattice located at the middle point of arbitrary two neighboring cross positions. When d_p/d_lattice approx 1, the entrapment time in the unit cubic lattice space is greatly enhanced due to the high potential to be overcome when the tracer particle undergoes the translation beyond the boundary of arbitrary two neighboring unit cubic lattices.
机译:通过布朗动力学模拟研究了示踪粒子在不带电荷和带电荷的立方晶格中的自扩散,具有硬体类型的排除体积效应,作为凝胶交联网络的简化结构。与自由扩散相比,示踪粒子与立方晶格之间的排他体积和静电吸引相互作用均导致自扩散系数的降低。当d_p / d_lattice 1和d_p / d_lattice大约为1时,由静电吸引相互作用引起的还原效果显着,其中d_lattice和d_p分别表示立方晶格的网格大小和示踪粒子的直径。当d_p / d_lattice 1时,自扩散系数的降低主要是由于在位于任意两个相邻交叉位置的中点的立方晶格上的带电点周围的陷获。当d_p / d_lattice大约为1时,由于示踪剂粒子在超过任意两个相邻的单位立方晶格的边界进行平移时需要克服的高电位,因此单位立方晶格空间中的捕获时间大大增加。

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