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盐溶液中聚电解质的泊松-玻尔兹曼模型与唐南平衡的比较

Comparison of the Poisson-Boltzmann Model and the Donnan Equilibrium of a Polyelectrolyte in Salt Solution.

作者信息

Dähnert K, Huster D

机构信息

Institut für Medizinische Physik und Biophysik, Medizinische Fakultät der Universität Leipzig, Liebigstraße 27, Leipzig, 04103, Germany

出版信息

J Colloid Interface Sci. 1999 Jul 1;215(1):131-139. doi: 10.1006/jcis.1999.6238.

Abstract

A sequence of charged parallel flat plates immersed in a salt solution is used to model the swelling behavior of a polyelectrolyte. The solution of the nonlinear Poisson-Boltzmann equation gives rise to an analytical expression of the plate distance as a function of swelling pressure (p), plate charge density (varsigma), and salt concentration (n). The exact treatment of the system also yields the connection between polyelectrolyte concentration nP, p, varsigma, and n. A formula for the electric potential difference between polyelectrolyte and salt solutions is derived. On the other hand, the relation between nP, p, and n is known from the Donnan equilibrium. It is shown that the Donnan potential, UD(nP, n), and swelling pressure, pD(nP, n), are always larger than the equivalent quantities in the Poisson-Boltzmann theory (UPB(varsigma, nP, n) and pPB(varsigma, nP, n), respectively). The transition from the Poisson-Boltzmann theory to the Donnan model is achieved by the limiting process varsigma --> 0 which reveals the intrinsic linkage between the two theories. pD(nP, n) = limvarsigma-->0 pPB(varsigma, nP, n) and UD(nP, n) = limvarsigma-->0 UPB(varsigma, nP, n). Copyright 1999 Academic Press.

摘要

将一系列浸于盐溶液中的带电平行平板用于模拟聚电解质的溶胀行为。非线性泊松 - 玻尔兹曼方程的解给出了平板间距作为溶胀压力(p)、平板电荷密度(ς)和盐浓度(n)的函数的解析表达式。对该系统的精确处理还得出了聚电解质浓度nP、p、ς和n之间的关系。推导了聚电解质溶液与盐溶液之间的电势差公式。另一方面,nP、p和n之间的关系可从唐南平衡得知。结果表明,唐南电势UD(nP, n)和溶胀压力pD(nP, n)总是大于泊松 - 玻尔兹曼理论中的等效量(分别为UPB(ς, nP, n)和pPB(ς, nP, n))。通过ς→0的极限过程实现了从泊松 - 玻尔兹曼理论到唐南模型的转变,这揭示了两种理论之间的内在联系。pD(nP, n) = limς→0 pPB(ς, nP, n)且UD(nP, n) = limς→0 UPB(ς, nP, n)。版权所有1999年,学术出版社。

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