Shahzad Umer, Saeed Mohsin, Marwani Hadi M, Al-Humaidi Jehan Y, Rehman Shujah Ur, Althomali Raed H, Awual Md Rabiul, Rahman Mohammed M
Department of Chemistry, Faculty of Science, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Center of Excellence for Advanced Materials Research (CEAMR), King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Crit Rev Anal Chem. 2024 Apr 9:1-18. doi: 10.1080/10408347.2024.2337876.
Electrochemical sensors have been the subject of much research and development as of late, with several publications detailing new designs boasting enhanced performance metrics. That is, without a doubt, because such sensors stand out from other analytical tools thanks to their excellent analytical characteristics, low cost, and ease of use. Their progress has shown a trend toward seeking out novel useful nano structure materials. A variety of nanostructure metal oxides have been utilized in the creation of potentiometric sensors, which are the subject of this article. For screen-printed pH sensors, metal oxides have been utilized as sensing layers due to their mixed ion-electron conductivity and as paste-ion-selective electrode components and in solid-contact electrodes. Further significant uses include solid-contact layers. All the metal oxide uses mentioned are within the purview of this article. Nanoscale metal oxides have several potential uses in the potentiometry method, and this paper summarizes such uses, including hybrid materials and single-component layers. Potentiometric sensors with outstanding analytical properties can be manufactured entirely from metal oxides. These novel sensors outperform the more traditional, conventional electrodes in terms of useful characteristics. In this review, we looked at the potentiometric analytical properties of different building solutions with various nanoscale metal oxides.
近年来,电化学传感器一直是大量研究和开发的主题,有几篇出版物详细介绍了具有增强性能指标的新设计。毫无疑问,这是因为此类传感器凭借其出色的分析特性、低成本和易用性,在其他分析工具中脱颖而出。它们的发展呈现出一种寻找新型有用纳米结构材料的趋势。多种纳米结构金属氧化物已被用于制造电位传感器,本文将围绕电位传感器展开讨论。对于丝网印刷pH传感器,金属氧化物因其混合的离子 - 电子传导性,被用作传感层、糊剂离子选择性电极组件以及固体接触电极。其进一步的重要用途包括固体接触层。本文将涵盖上述所有金属氧化物的用途。纳米级金属氧化物在电位分析法中有多种潜在用途,本文总结了这些用途,包括混合材料和单组分层。具有出色分析性能的电位传感器可以完全由金属氧化物制成。这些新型传感器在有用特性方面优于更传统的常规电极。在本综述中,我们研究了不同纳米级金属氧化物构建方案的电位分析特性。