Andrei D. Novakovskii, Vladimir V. Egorov, Danila V. Korostik
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引用次数: 0
摘要
制定并从理论上证实了用于无液体连接参比电极(LJFRE)聚氯乙烯膜的离子成分(IC)亲油性的定量标准,这些离子成分可提供稳定的电位,与样品溶液的电解质无关。研究表明,以分配常数表示的离子液体(IL)或亲油盐(LS)整体的亲油性参数,以及以单离子分配系数表示的单个离子的亲油性都有上限和下限。因此,IL 或 LS 中单个离子的亲油性窗口是存在的,其宽度取决于样品溶液中离子的亲油性和浓度。此外,整个电解质及其单个离子都存在亲油性上限,超过这个上限,在特定的实验条件下基本上就不可能应用 LJFRE。我们已经获得了明确描述 LJFRE 膜离子成分亲脂性上限(ULL)和下限(LLL)的方程,这些方程是样品溶液中电解质离子的单离子分配系数及其浓度,以及膜相中离子成分浓度和扩散参数的函数。预测的 ULL 和 LLL 值与使用动态扩散模型数值计算得出的相应值以及实验数据十分吻合。为合理选择满足特定实验条件的 IL 或 LS 成分制定了一些指南。
Lipophilicity Criteria for Ionic Components Used in Liquid-Junction-Free Reference Electrodes
Quantitative criteria for the lipophilicity of ionic components (ICs) used in PVC membranes of liquid-junction-free reference electrodes (LJFREs) providing a stable potential, independent of the electrolyte of the sample solution, have been formulated and theoretically substantiated. It is shown that the lipophilicity parameters of an ionic liquid (IL) or lipophilic salt (LS) as a whole, expressed in terms of partition constants, as well as the lipophilicities of individual ions, expressed in terms of single-ion partition coefficients, have both upper and lower limits. Therefore, a lipophilicity window for individual ions of IL or LS exists, and its width depends on the lipophilicity and concentration of the ions present in the sample solution. Besides that, upper lipophilicity limits for both an electrolyte as a whole and for its individual ions exist, beyond which any application of LJFREs is principally impossible under specified experimental conditions. Equations have been obtained that explicitly describe the upper (ULL) and lower limits of lipophilicity (LLL) of ionic components of LJFRE membranes as functions of the single-ion partition coefficients of electrolyte ions of the sample solution and their concentration, as well as the concentration of ionic components in the membrane phase and diffusion parameters. Predicted ULL and LLL values agree well with the corresponding values numerically calculated using a dynamic diffusion model and with experimental data. Some guides for the rational choice of IL or LS components satisfying specified experimental conditions are formulated.
期刊介绍:
Analytical Chemistry, a peer-reviewed research journal, focuses on disseminating new and original knowledge across all branches of analytical chemistry. Fundamental articles may explore general principles of chemical measurement science and need not directly address existing or potential analytical methodology. They can be entirely theoretical or report experimental results. Contributions may cover various phases of analytical operations, including sampling, bioanalysis, electrochemistry, mass spectrometry, microscale and nanoscale systems, environmental analysis, separations, spectroscopy, chemical reactions and selectivity, instrumentation, imaging, surface analysis, and data processing. Papers discussing known analytical methods should present a significant, original application of the method, a notable improvement, or results on an important analyte.