Department of Inorganic and Analytical Chemistry, University of Geneva, CH-1211 Geneva, Switzerland.
Anal Chem. 2021 Dec 7;93(48):15941-15948. doi: 10.1021/acs.analchem.1c03232. Epub 2021 Nov 21.
We compare here the effect of surfactants on ion-selective membranes measured via voltammetry and optode emulsions measured optically. Cyclic voltammetry on a thin-film ion-selective membrane is shown to be a useful screening technique for the estimation of effective complex formation constants and selectivity coefficients for different surfactants with various cations. This technique is particularly useful for its ability to identify separate ion-transfer events (free, surfactant complexed, ionophore complexed) for a specific membrane. However, we also caution against the over-reliance on this technique as changes in membrane characteristics are observed following surfactant partitioning. Of the surfactants explored here, a zwitterionic sulfobetaine-based surfactant was found to stabilize sensors without reducing effective binding constants and selectivity, with greatly superior characteristics to other commonly utilized surfactants. Those include Brij-35, F-127, and Triton X-100, all of which showed significant binding to so-called free ions in the membrane, resulting in peak potential shifts of 199 ± 10, 180 ± 24, 278 ± 11 mV, respectively, for potassium following the subtraction of transducing layer effects. This peak shift translated to a much larger undesired free ion response in optode emulsions. The selectivity in emulsion-based systems was also shown to decrease in the presence of nonionic surfactants compared to that containing the zwitterion.
我们在这里比较了通过伏安法测量的表面活性剂对离子选择性膜的影响和通过光学方法测量的光学生物传感器乳液的影响。对于不同阳离子的不同表面活性剂,薄膜离子选择性膜的循环伏安法是一种有用的筛选技术,可以估计有效络合常数和选择性系数。该技术特别有用,因为它能够识别特定膜的单独离子转移事件(游离、表面活性剂络合、载体络合)。然而,我们也警告不要过度依赖该技术,因为在表面活性剂分配后观察到膜特性发生变化。在探索的表面活性剂中,发现一种两性离子磺基甜菜碱基表面活性剂可以稳定传感器,而不会降低有效结合常数和选择性,其特性优于其他常用表面活性剂。这些表面活性剂包括 Brij-35、F-127 和 Triton X-100,它们在膜中都与所谓的游离离子有明显的结合,导致钾的峰电位分别偏移 199±10、180±24 和 278±11 mV,减去传质层效应后。这种峰位偏移导致光学生物传感器乳液中出现更大的不期望的游离离子响应。与含有两性离子的系统相比,非离子表面活性剂的存在还会导致乳液基系统中的选择性降低。