Naydenov A, Pincus P A, Safran S A
Department of Physics, University of California-Santa Barbara, Santa Barbara, CA 93106, USA.
Langmuir. 2007 Nov 20;23(24):12016-23. doi: 10.1021/la702085x. Epub 2007 Oct 20.
Recent experiments have shown that salt solutions containing surfaces with two oppositely charged species show stable, possibly equilibrium, structures with finite domain sizes. The short-range interactions between the two species would normally result in phase separation that is driven by the line tension with macroscopically large domains of each species. In this paper, we show that, when at least one of the charged species is mobile, finite domains can occur in equilibrium. The domain size is determined by a competition of the electrostatic free energy that promotes charge mixing and small domains, with the line tension that promotes macroscopic phase separation. We calculate the equilibrium patch size as a function of the surface charge and the concentration of dissolved monovalent salts in the bulk phase. An important finding is the prediction of a first-order transition from finite patches to macroscopic phase separation of the two charge species as the salt concentration is increased.
最近的实验表明,含有两种带相反电荷物种表面的盐溶液会呈现出具有有限域尺寸的稳定结构,可能处于平衡状态。这两种物种之间的短程相互作用通常会导致相分离,这种相分离由线张力驱动,形成每种物种的宏观大区域。在本文中,我们表明,当至少一种带电物种是可移动的时,有限域可以在平衡状态下出现。域尺寸由促进电荷混合和小域的静电自由能与促进宏观相分离的线张力之间的竞争决定。我们计算了平衡斑块尺寸作为表面电荷和本体相中溶解单价盐浓度的函数。一个重要的发现是预测随着盐浓度的增加,会发生从有限斑块到两种电荷物种宏观相分离的一级转变。