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Self-consistent field theory of polyelectrolyte brushes with finite chain extensibility

机译:具有有限链可伸展性的聚电解质刷的自洽场理论

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Polyelectrolyte brushes are formed by charged macromolecules tethered by the end segment to a solid-liquid interface. At low ionic strength of the solution, the intermolecular electrostatic interactions lead to strong stretching of the macromolecules that may, as a result, approach the limit of their extensibility (the contour length). Here, we present an analytical theory of polyelectrolyte brushes developed within the Poisson-Boltzmann approximation which explicitly accounts for finite extensibility of the brush-forming chains. In contrast to earlier theories based on the approximation of Gaussian elasticity of the brush-forming chains, the current approach enables avoiding artificial result of stretching of the chains beyond the contour length at high degrees of ionization or/and large grafting densities. Published by AIP Publishing.
机译:聚电解质刷是通过通过端部段的带电大分子与固液界面形成的。 在溶液的低离子强度下,分子间静电相互作用导致大分子的强烈拉伸,这可能是可以接近其可伸展性的极限(轮廓长度)。 在这里,我们提出了一种在泊松 - 博尔兹曼近似内开发的聚电解质刷的分析理论,其明确地占刷子形成链的有限伸展性。 与基于刷形成链的高斯弹性的近似的近似的早期理论相比,电流方法使得能够避免在高离电离或大的接枝密度下避免超出轮廓长度的链条的人工结果。 通过AIP发布发布。

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