Institute of Chemistry, Saint Petersburg State University, 7/9 Universitetskaya Emb., 199034 St. Petersburg, Russia.
ACS Sens. 2023 Aug 25;8(8):3086-3094. doi: 10.1021/acssensors.3c00742. Epub 2023 Jul 31.
Despite a number of advantages of ion-selective optical sensors (optodes), their practical application is limited by their response mechanism, which leads to the dependence of the signal on the activity of two ions (analyte ion and the so-called reference ion) in the solution at the same time. Here, we show that the introduction of a lipophilic electrolyte into the polymeric optode membrane allows assessing the ionic activity of H cations regardless of the concentration of the background electrolyte containing a hydrophilic cation, with NaCl as an example of such an electrolyte. For the first time, the applicability of this approach is proven theoretically utilizing the numerical simulation of optode response. A correlation between the interfacial potential stability and the single-ion optical response is established. The predicted optical response is independent of background cation concentration to a significant extent. Theoretical conclusions are supported by experimental data obtained with chromoionophore-based optodes doped with various lipophilic electrolytes, including ionic liquids, by thin-film spectrophotometry and macrophotography coupled with digital color analysis. Most of the experimental sensor characteristics, such as the response range and its median, as well as its independence from the background electrolyte concentration are in quantitative agreement with the proposed theoretical description.
尽管离子选择性光学传感器(光导纤维)具有许多优点,但它们的实际应用受到其响应机制的限制,这导致信号同时取决于溶液中两种离子(分析物离子和所谓的参考离子)的活性。在这里,我们表明,在聚合物光导纤维膜中引入亲脂性电解质可以评估 H 阳离子的离子活性,而与含有亲水性阳离子的背景电解质的浓度无关,以 NaCl 作为这种电解质的示例。我们首次利用光导纤维响应的数值模拟从理论上证明了这种方法的适用性。建立了界面电位稳定性与单离子光学响应之间的相关性。预测的光学响应在很大程度上不受背景阳离子浓度的影响。理论结论得到了用各种亲脂性电解质(包括离子液体)掺杂的基于显色离子对的光导纤维通过薄膜分光光度法和与数字颜色分析相结合的宏观摄影获得的实验数据的支持。实验传感器的大多数特性,例如响应范围及其中位数,以及其对背景电解质浓度的不依赖性,与所提出的理论描述在定量上是一致的。