Department of Chemical Engineering, The University of Texas at Austin, Austin, TX 78712, USA.
J Colloid Interface Sci. 2010 May 15;345(2):194-9. doi: 10.1016/j.jcis.2010.01.055. Epub 2010 Jan 25.
Electrophoretic mobilities of concentrated dispersions of carbon black particles in a low-permittivity solvent were measured using differential-phase optical coherence tomography (DP-OCT). An electrode spacing of only 0.18 mm enables measurement of highly concentrated dispersions up to 1 wt.% of highly absorbing carbon black particles with high electric fields at low potentials. The capabilities of this DP-OCT method, including high sensitivity, high spatial resolution, and strong electric fields, enable enhanced measurement of low electrophoretic mobilities encountered in low-permittivity solvents. The zeta potential of carbon black particles ranged from -24 mV to -12 mV as the concentration of surfactant sodium bis(2-ethyl-1-hexyl)sulfosuccinate (AOT) was increased from 1 mM to 100 mM. A mechanism is presented to explain the electrostatic charging of carbon black particles in terms of the partitioning of the ions between the reverse micelles in the double layer and the surfactant adsorbed on the particle surface, as AOT concentration is varied.
使用差分相衬光学相干断层扫描(DP-OCT)测量了低介电常数溶剂中高浓度碳黑颗粒分散体的电泳迁移率。仅 0.18 毫米的电极间距可用于测量高浓度分散体,最高可达 1 重量%的高吸收碳黑颗粒,并在低电位下施加高电场。该 DP-OCT 方法的功能包括高灵敏度、高空间分辨率和强电场,可增强对低介电常数溶剂中遇到的低电泳迁移率的测量。当表面活性剂双(2-乙基己基)琥珀酸二(2-乙基己基)磺酸钠(AOT)的浓度从 1mM 增加到 100mM 时,碳黑颗粒的动电电位范围从-24mV 到-12mV。提出了一种机制,根据双电层中反胶束之间的离子分配以及吸附在颗粒表面上的表面活性剂,来解释碳黑颗粒的静电充电,这取决于 AOT 浓度的变化。