Department of Chemical Engineering, Queen's University, Kingston, Ontario, Canada.
Electrophoresis. 2019 Mar;40(5):710-719. doi: 10.1002/elps.201800293. Epub 2018 Sep 27.
The complex permittivities of aqueous SDS solutions, with and without the addition of sodium chloride (NaCl), are measured in the frequency range from 200 MHz to 14 GHz. The SDS concentrations are chosen such that the SDS molecules aggregate to micelles. In this frequency range, the measured spectra allow for the identification of two different relaxation processes. That is, the relaxation of the water molecules at frequencies above 1 GHz and the micellar relaxation at frequencies lower than 1 GHz. It is found that the addition of NaCl to the system mostly affects the micellar relaxation process. In detail, the time constant as well as the amplitude of the relaxation decrease by adding NaCl. These effects are attributed to the change in the solution conductivity that changes the properties of the micelle's electrical double layer. We also extract the Dukhin number of the micelles as a function of surfactant and electrolyte content from the measurements. The Dukhin number is a dimensionless group that describes the influence of the surface conductivity on a phenomena. A regression between Dukhin numbers and free sodium ions is found so that all data collapses on a single curve independent of the surfactant concentration. The surface conductivity is a manifestation of the electrical double layer and we use the Bikerman equation to infer the zeta potential of the micelles. Comparison to literature data shows very good agreement and proves that dielectric relaxation spectroscopy can be engaged to infer the zeta potential of micelles. Abbreviations: CMC critical micelle concentration, DRS dielectric relaxation spectroscopy, EDL electrical double layer.
水溶液中 SDS 溶液的复介电常数(含或不含氯化钠(NaCl))在 200MHz 至 14GHz 的频率范围内进行测量。SDS 的浓度选择使得 SDS 分子聚集形成胶束。在这个频率范围内,测量的光谱允许识别出两种不同的弛豫过程。也就是说,水分子在 1GHz 以上的频率下的弛豫和胶束在 1GHz 以下的频率下的弛豫。研究发现,向体系中添加 NaCl 主要影响胶束弛豫过程。具体来说,添加 NaCl 会降低弛豫时间常数和弛豫幅度。这些效应归因于溶液电导率的变化,而电导率的变化改变了胶束电双层的性质。我们还从测量结果中提取了胶束的 Dukhin 数作为表面活性剂和电解质含量的函数。Dukhin 数是一个无量纲的参数,用于描述表面电导率对现象的影响。发现 Dukhin 数与游离钠离子之间存在回归关系,因此所有数据都独立于表面活性剂浓度而在单个曲线上收敛。表面电导率是电双层的表现形式,我们使用 Bikerman 方程来推断胶束的 ζ 电位。与文献数据的比较显示出非常好的一致性,证明介电弛豫光谱可以用于推断胶束的 ζ 电位。缩写:CMC-临界胶束浓度,DRS-介电弛豫光谱,EDL-电双层。