Lyklema Johannes, Duval Jérôme F L
Laboratory of Physical Chemistry and Colloid Science, Wageningen University, Dreijenplein 6, 6703 HB Wageningen, The Netherlands.
Adv Colloid Interface Sci. 2005 Jun 30;114-115:27-45. doi: 10.1016/j.cis.2004.05.002.
This issue of Advances is devoted to the memory of Hans-Joachim Schulze who, before his untimely death, made substantial contributions in the domains of flotation, wetting and particle interaction, often under adverse working conditions. Many of his publications involve hetero-interaction between different oxides or between solids and air bubbles. In the present paper, the theory for the electric interaction between charged interfaces is reviewed and extended by considering regulation on the Gouy-Stern level, including hetero-interaction. We start from a generalization of the phenomenon of regulation, distinguishing electrostatic, chemical and entropic contributions to the regulation capacity. The analysis is carried out in the mean field approximation for flat double layers. Against this background we review and discuss the existing literature. It is shown that for an appropriate account it is mandatory to include Stern layers, to which not only electrical but also chemical and entropic contributions to the regulation capacity can be attributed. It is demonstrated that interaction at constant diffuse double layer potential or -charge works only at rather large distance of separation. At shorter distance, substantial deviations from this behaviour are found, with a trend that interaction at (about) constant potential is the better obeyed the higher the corresponding regulation capacities are. A lattice model is elaborated to visualize the profiles of the (surface, Stern and diffuse) charges and the corresponding potential changes upon overlap, including the cases where strong induction leads to charge-inversion of the layer with the larger regulation capacity. A number of elaborations is presented, but the potentialities of the model are virtually unlimited.
本期《进展》专刊是为纪念汉斯 - 约阿希姆·舒尔茨而出版。他在浮选、润湿和颗粒相互作用领域做出了重大贡献,且常常是在不利的工作条件下。他的许多出版物涉及不同氧化物之间或固体与气泡之间的异质相互作用。在本文中,通过考虑古伊 - 斯特恩层面上的调节作用(包括异质相互作用),对带电界面间的电相互作用理论进行了回顾与扩展。我们从调节现象的一般化入手,区分了调节能力的静电、化学和熵贡献。分析是在平面双层的平均场近似下进行的。在此背景下,我们回顾并讨论了现有文献。结果表明,为了进行恰当的描述,必须纳入斯特恩层,调节能力的贡献不仅包括电学方面,还包括化学和熵方面。结果表明,在恒定扩散双层电势或电荷下的相互作用仅在相当大的分离距离时才起作用。在较短距离时,会发现与这种行为有显著偏差,且存在一种趋势,即(大约)在恒定电势下的相互作用,相应的调节能力越高,就越能得到较好的遵循。阐述了一个晶格模型,以可视化(表面、斯特恩和扩散)电荷的分布以及重叠时相应的电势变化,包括强感应导致具有较大调节能力的层发生电荷反转的情况。本文给出了一些详细阐述,但该模型的潜力实际上是无限的。