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Force Balances in Systems of Cylindrical Polyelectrolytes

机译:圆柱形聚电解质系统中的力平衡

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摘要

A detailed analysis is made of the model system of two parallel cylindrical polyelectrolytes which contain ionizable groups on their surfaces and are immersed in an ionic bathing medium. The interaction between the cylinders is examined by considering the interplay between repulsive electrostatic forces and attractive forces of electrodynamic origin. The repulsive force arises from the screened coulomb interaction between the surface charge distributions on the cylinders and has been treated by developing a solution to the linearized Poisson-Boltzmann equation. The boundary condition at the cylinder surfaces is determined as a self-consistent functional of the potential, with the input consisting of the density of ionizable groups and their dissociation constants. It is suggested that a reasonably accurate representation for the form of the attractive force can be obtained by performing a pairwise summation of the individual interatomic forces. A quantitative estimate is obtained using a Hamaker constant chosen on the basis of rigorous calculations on simpler systems. It is found that a balance exists between these repulsive and attractive forces at separations in good agreement with those observed in arrays of tobacco mosaic virus and in the A band myosin lattice in striated muscle. The behavior of the balance point as a function of the pH and ionic strength of the bathing medium closely parallels that seen experimentally.
机译:对两个平行的圆柱形聚电解质的模型系统进行了详细分析,该电解质在其表面上包含可电离的基团,并浸入离子浴介质中。通过考虑排斥静电力和电动原动力之间的相互作用来检查气缸之间的相互作用。排斥力来自圆柱体表面电荷分布之间的屏蔽库仑相互作用,并且已通过开发线性化泊松-玻尔兹曼方程的解进行了处理。圆柱表面的边界条件被确定为电位的自洽函数,输入内容包括可电离基团的密度及其解离常数。建议可以通过对各个原子间力进行成对求和来获得对吸引力形式的合理准确表示。使用在更简单的系统上进行严格计算后选择的Hamaker常数可获得定量估计值。发现在分离时这些排斥力和吸引力之间存在平衡,这与在烟草花叶病毒阵列和横纹肌的A带肌球蛋白晶格中观察到的一致。平衡点的行为随浴液的pH值和离子强度而变化,与实验观察到的结果非常相似。

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