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用于水介质中铀(VI)评估的快速电化学传感器。

Rapid electrochemical sensor for uranium(vi) assessment in aqueous media.

作者信息

Akl Zeinab F

机构信息

Egyptian Atomic Energy Authority P.O. Box 11762 Cairo Egypt

出版信息

RSC Adv. 2022 Jul 11;12(31):20147-20155. doi: 10.1039/d2ra02619h. eCollection 2022 Jul 6.

Abstract

The significance of reliable monitoring of uranium levels in water recourses calls for the development of time-saving, robust, and accurate methods for its estimation. In this view, the current study describes the design and analytical parameters of a potentiometric membrane sensor for uranium(vi) ions. The sensor is based on a new Schiff base derivative, as an ionophore, that was synthesized and structurally characterized by elemental, FTIR, and HNMR analyses. The impact of the membrane constituents was studied and the membrane composition of PVC (32.50) : -NPOE (65.00) : ionophore (2.00) :  KTpClPB (0.50) (%, w/w) achieved the optimal performance. A Nernestian response was observed for uranium(vi) ions within the concentration range 1.00 × 10 to 1.00 × 10 mol L. The sensor revealed a low detection limit of 3.90 × 10 mol L with satisfactory reproducibility. Stable and reproducible potentials were obtained within a short time (9 s) over the pH range 2.10-4.21. The impact of possible competing ions was investigated and the selectivity coefficients revealed appropriate selectivity for uranium(vi) ions over various cations without significant interference. The sensor's performance was examined by determining the amount of uranium(vi) in water samples and the results showed no significant differences from those obtained by the ICP-OES method.

摘要

可靠监测水资源中铀含量的重要性,要求开发省时、稳健且准确的铀含量估算方法。鉴于此,本研究描述了一种用于铀(VI)离子的电位膜传感器的设计及分析参数。该传感器基于一种新合成的席夫碱衍生物作为离子载体,通过元素分析、傅里叶变换红外光谱(FTIR)和核磁共振氢谱(HNMR)分析对其进行了结构表征。研究了膜成分的影响,聚氯乙烯(PVC,32.50)∶邻硝基苯基辛基醚(NPOE,65.00)∶离子载体(2.00)∶四(对氯苯基)硼酸钾(KTpClPB,0.50)(质量分数,%)的膜组成实现了最佳性能。在1.00×10至1.00×10摩尔/升的浓度范围内,观察到铀(VI)离子呈现能斯特响应。该传感器的检测限低至3.90×10摩尔/升,具有令人满意的重现性。在pH值2.10 - 4.21范围内,短时间(9秒)内即可获得稳定且可重现的电位。研究了可能存在的竞争离子的影响,选择性系数表明该传感器对铀(VI)离子相对于各种阳离子具有适当的选择性,且无明显干扰。通过测定水样中的铀(VI)含量对传感器性能进行了检验,结果表明与电感耦合等离子体发射光谱法(ICP - OES)所得结果无显著差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b22e/9272783/e61057580dca/d2ra02619h-s1.jpg

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