Usui S
Tohoku University, Katahira, Aobaku, Sendai 980-8577, Japan.
J Colloid Interface Sci. 2008 Apr 1;320(1):353-9. doi: 10.1016/j.jcis.2007.12.016. Epub 2008 Jan 24.
The force of double-layer interaction between dissimilar flat oxide surfaces charged oppositely at infinite separation and with Stern-Grahame layers was calculated as a function of the surface separation under the conditions of charge regulation. The interaction force showed a monotonic attraction with respect to the surface separation, lying between constant surface potential and constant surface charge conditions. The variations of surface potentials and surface charge densities of respective double layers were also presented as functions of the surface separation. When the negative diffuse-layer potential at infinite separation changed its sign to positive as a result of specific adsorption of cations on the negatively changed surface, the double-layer interaction force showed a repulsive force barrier followed by an attraction at some particular separation.
计算了在电荷调节条件下,无限分离且带有斯特恩 - 格雷厄姆层的异种平面氧化物表面之间的双层相互作用力与表面间距的函数关系。在恒定表面电位和恒定表面电荷条件之间,相互作用力随表面间距呈单调吸引。还给出了各双层的表面电位和表面电荷密度随表面间距的变化。当由于阳离子在带负电表面上的特异性吸附,无限分离时的负扩散层电位变为正时,双层相互作用力会出现排斥力势垒,随后在某个特定间距处出现吸引力。