Asia Pacific Center for Theoretical Physics, Pohang, Gyeongbuk, 790-784, Korea.
Department of Physics, Pohang University of Science and Technology, Asia Pacific Center for Theoretical Physics, Pohang, Gyeongbuk, 790-784, Korea.
Phys Rev E. 2016 Jan;93(1):012504. doi: 10.1103/PhysRevE.93.012504. Epub 2016 Jan 29.
Strong-coupling phenomena, such as like-charge macroion attraction, opposite-charged macroion repulsion, charge renormalization, and charge inversion, are known to be mediated by multivalent counterions. Most theories treat the counterions as point charges and describe the system by a single coupling parameter that measures the strength of the Coulomb interactions. In many biological systems, the counterions are highly charged and have finite sizes and can be well-described by polyelectrolytes. The shapes and orientations of these polymer counterions play a major role in the thermodynamics of these systems. In this work we apply a field-theoretic description in the strong-coupling regime to the polymer counterions in the presence of a fixed charge distribution. We work out the special cases of rodlike polymer counterions confined by one, and two charged walls, respectively. The effects of the geometry of the rodlike counterions and the excluded volume of the walls on the density, pressure, and free energy of the rodlike counterions are discussed.
强耦合现象,如同电荷大分子的吸引、相反电荷大分子的排斥、电荷重整化和电荷反转,已知是由多价抗衡离子介导的。大多数理论将抗衡离子视为点电荷,并通过单个耦合参数来描述系统,该参数衡量库仑相互作用的强度。在许多生物系统中,抗衡离子带高电荷且具有有限的大小,可以很好地用聚电解质来描述。这些聚合物抗衡离子的形状和取向在这些系统的热力学中起着主要作用。在这项工作中,我们在强耦合区域应用场论描述来研究固定电荷分布下的聚合物抗衡离子。我们分别研究了棒状聚合物抗衡离子被一个和两个带电壁限制的特殊情况。讨论了棒状抗衡离子的几何形状和壁的排除体积对棒状抗衡离子的密度、压力和自由能的影响。