Inorganic Nitrate Determination Employing Co(II) Complex Potentiometry

IF 0.9 4区 材料科学 Science of Advanced Materials Pub Date : 2024-05-01 DOI:10.1166/sam.2024.4672
Mohd. Farhan Khan, Jawed Mustafa, Faez Qahtani, Khalid Umar, Hasan M. H. Muhaisen, M. M. Abdullah, Mohammad Luqman
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Abstract

The research presented here describes the development of membranes made of polymeric materials with unique cobalt(II) complexes to identify nitrate anions in water. The authors of the study precisely coordinated cobalt(II) ions with a neutral tetradentate ligand known as N,N-Ethylene bis(Salicylideneaminato) to develop an efficient anion-binding carrier with nitrate sensitivity. Good nitrate specificity was accomplished by incorporating these Co(II) complexes onto membranes alongside the plasticizer dibutyl phthalate (DBP). The improved Co(II)-based sensors achieved near-Nernstian response slopes throughout a large linear detecting span of 5.0×10−6 to 1.0×10−1 M nitrate, retained functionality from pH 3 to 12, and responded quickly in about 15 seconds. Potentiometric sensitivity factor analyses revealed that the fabricated Co(II) sensor membrane had a higher sensitivity for nitrate compared to more conventional ions. In general, this study highlights the potential of customized Co(II) complexes incorporated into polymeric membranes to be selective and efficient potentiometric sensors for detecting nitrate anions in water bodies. It serves as a foundation for developing enhanced nitrate detection systems for use in important environmental as well as health monitoring processes.
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利用钴(II)络合物电位测定法测定无机硝酸盐
本文介绍的研究描述了用独特的钴(II)配合物制成的聚合物材料膜的开发过程,以识别水中的硝酸根阴离子。该研究的作者将钴(II)离子与一种名为 N,N-乙烯双(水杨醛胺)的中性四价配位体精确配位,开发出一种具有硝酸盐灵敏度的高效阴离子结合载体。通过将这些 Co(II) 复合物与增塑剂邻苯二甲酸二丁酯(DBP)一起加入膜中,实现了良好的硝酸盐特异性。改进后的基于 Co(II) 的传感器在 5.0×10-6 至 1.0×10-1 M 硝酸盐的大线性检测跨度内实现了接近纳斯特的响应斜率,在 pH 值为 3 至 12 的范围内保持了功能性,并在约 15 秒内快速响应。电位灵敏度系数分析表明,与更传统的离子相比,制作的 Co(II) 传感器膜对硝酸盐具有更高的灵敏度。总之,本研究强调了将定制的 Co(II) 复合物融入聚合物膜中,使其成为检测水体中硝酸盐阴离子的选择性高效电位传感器的潜力。它为开发用于重要环境和健康监测过程的增强型硝酸盐检测系统奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Science of Advanced Materials
Science of Advanced Materials NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
自引率
11.10%
发文量
98
审稿时长
4.4 months
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