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基于氢键的大环和三脚架中性离子载体用于高选择性聚合物膜硫酸盐选择性电极。

Hydrogen Bond-Based Macrocyclic and Tripodal Neutral Ionophores for Highly Selective Polymeric Membrane Sulfate-Selective Electrodes.

机构信息

College of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao 266042, P. R. China.

College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, P. R. China.

出版信息

ACS Sens. 2021 Jan 22;6(1):245-251. doi: 10.1021/acssensors.0c02231. Epub 2020 Dec 29.

Abstract

Four hydrogen bond-based macrocyclic and tripodal neutral receptors with increasing conformational complementarity with sulfate were used for the first time as ionophores to develop polymeric membrane sulfate-selective electrodes. Optimizing the membrane composition such as ionophores, lipophilic additives, and plasticizers yielded ISEs which showed Nernstian response to sulfate with the best selectivity so far and improved detection limits (a slope of -29.8 mV/dec in the linear range of 1 × 10-1 × 10 M with a detection limit of 5 × 10 M), which led to the success of the determination of sulfate in drinking water samples and neomycine tablets. The anion-ionophore complex constants in the membrane phase were determined and correlated with the selectivity sequence of the ISEs. Studies on the influence of pH of the sample solution demonstrated that the developed ISEs can be operated in a wide pH range of 3-8 with fast response and rapid (in 1 min) and long lifetime. The success of these ionophores represents a feasible strategy for overcoming the "Hofmeister series" by employing a combination of complementarity and hydrogen bonds.

摘要

四种基于氢键的大环和三脚架中性受体与硫酸盐的构象互补性逐渐增强,它们首次被用作离子载体,用于开发聚合物膜硫酸盐选择性电极。通过优化膜组成,如离子载体、亲脂性添加剂和增塑剂,得到了对硫酸盐具有迄今为止最佳选择性和改善的检测限(线性范围内的斜率为-29.8 mV/dec,检测限为 5×10-6 M)的 ISE,这使得成功测定饮用水样品和新霉素片剂中的硫酸盐成为可能。在膜相中确定了阴离子-离子载体复合物常数,并将其与 ISE 的选择性顺序相关联。对样品溶液 pH 值影响的研究表明,开发的 ISE 可以在 3-8 的宽 pH 值范围内操作,具有快速响应和快速(1 分钟内)和长寿命。这些离子载体的成功代表了通过结合互补性和氢键来克服“Hofmeister 序列”的可行策略。

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