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电解质共萃取对基于指示剂的阳离子选择性光极响应的影响。

Influence of Electrolyte Coextraction on the Response of Indicator-Based Cation-Selective Optodes.

作者信息

Kalinichev Andrey V, Pokhvishcheva Nadezhda V, Peshkova Maria A

机构信息

Chemistry Institute, Saint Petersburg State University, 26 Universitetskiy prospect, 198504 Saint Petersburg, Russia.

出版信息

ACS Sens. 2020 Nov 25;5(11):3558-3567. doi: 10.1021/acssensors.0c01747. Epub 2020 Oct 19.

Abstract

Here, we report on systematic investigation of the impact of coextraction of the aqueous electrolyte and anion interference on the response of cation-selective bulk optodes. It is evident that to deliberately manage the properties of chemical sensors and to apply them in routine analysis, one should have exhaustive insight into their operation mechanism. Despite the extensive research in the field of ionophore-based optodes and numerous attempts for their practical application, the understanding of how coextraction of an aqueous electrolyte influences its response characteristics has not been developed thus far. Meanwhile, the electrolyte coextraction determines the detection limits of analogous ion-selective electrodes. A theoretical model based on phase distribution equilibrium is proposed to quantitatively describe the effect of Donnan exclusion failure on the response of polymeric plasticized optodes. The theoretical conclusions are confirmed by the results obtained with Na/pH-selective optodes based on a neutral chromoionophore as a model system in solutions containing anions of various lipophilicities (Cl, NO, I, SCN, and ClO). For the first time, it is shown that coextraction leads to a significant shift of the response range of the optodes as well as to nonmonotonic response curves due to the transition from cationic to anionic response. An approach to estimate the coextraction constants of electrolytes from the optode response curves is proposed. The limitations in the applicability of optodes due to co-ion interference are explored. It is found that neglecting anion interference can cause dramatic errors in the results of analyses with optical sensors.

摘要

在此,我们报告了关于水相电解质共萃取和阴离子干扰对阳离子选择性整体光极响应影响的系统研究。显然,为了有意地控制化学传感器的性能并将其应用于常规分析,人们应该对其运行机制有详尽的了解。尽管在基于离子载体的光极领域进行了广泛研究,并多次尝试将其实际应用,但到目前为止,对于水相电解质共萃取如何影响其响应特性仍未形成全面的认识。同时,电解质共萃取决定了类似离子选择性电极的检测限。提出了一种基于相分布平衡的理论模型,以定量描述唐南排斥失效对聚合物增塑光极响应的影响。基于中性发色团离子载体的钠/氢离子选择性光极作为模型系统,在含有各种亲脂性阴离子(氯离子、硝酸根离子、碘离子、硫氰酸根离子和高氯酸根离子)的溶液中得到的结果证实了理论结论。首次表明,由于从阳离子响应向阴离子响应的转变,共萃取导致光极响应范围发生显著偏移以及响应曲线出现非单调变化。提出了一种从光极响应曲线估算电解质共萃取常数的方法。探讨了由于共离子干扰导致光极适用性的局限性。发现忽略阴离子干扰会在光学传感器分析结果中造成巨大误差。

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