Cheong Yi Heng, Ge Liya, Lisak Grzegorz
School of Civil and Environmental Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore; Robert Bosch (South East Asia) Pte Ltd, 11 Bishan Street 21, Singapore, 573943, Singapore; Residues and Resource Reclamation Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University, 1 Cleantech Loop, CleanTech One, Singapore, 637141, Singapore.
Residues and Resource Reclamation Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University, 1 Cleantech Loop, CleanTech One, Singapore, 637141, Singapore.
Anal Chim Acta. 2021 Jun 1;1162:338304. doi: 10.1016/j.aca.2021.338304. Epub 2021 Feb 17.
The solid contact ion-selective electrodes (SC-ISEs) have been extensively studied in the field of ion sensing as they offer the possibility of miniaturization, are relatively inexpensive in comparison to other analytical techniques and allow straightforward and routine analyses of ions in a number of clinical, environmental and industrial process samples. In recent years, significant interest has grown in the development of SC-ISEs with well-defined interfacialpotentials at the membrane, solid contact, and substrate electrode interfaces. This has resulted in interesting SC-ISEs exhibiting high electrode-to-electrode potential reproducibility, for those made in a single batch of electrodes, some approaching or exceeding those observed in liquid-contact ISEs. The advancement in the potential reproducibility of SC-ISEs has been partially achieved by scrutinizing insufficiently reproducible fabrication methods of SC-ISEs, or by introducing novel control measures or modifiers to components of the ISEs. This paper provides an overview of the methods as well as the challenges in establishing and maintaining reproducible potentials during the fabrication and use of novel SC-ISEs. The rules outlined in the works reviewed may form the basis of further development of cost-effective, user-friendly, limited calibration or calibration-free potentiometric SC-ISEs to achieve reliable ion analyses here and now.
固体接触离子选择性电极(SC-ISEs)在离子传感领域已得到广泛研究,因为它们具有小型化的可能性,与其他分析技术相比成本相对较低,并且能够对许多临床、环境和工业过程样品中的离子进行直接和常规分析。近年来,人们对开发在膜、固体接触和基底电极界面具有明确界面电位的SC-ISEs产生了浓厚兴趣。这导致了有趣的SC-ISEs表现出高电极间电位重现性,对于在一批电极中制造的那些,有些接近或超过了在液接触ISEs中观察到的重现性。通过仔细审查SC-ISEs重现性不足的制造方法(或通过引入新颖的控制措施或修饰剂到ISEs的组件中),部分实现了SC-ISEs电位重现性的提高。本文概述了在新型SC-ISEs的制造和使用过程中建立和维持可重现电位的方法以及挑战。所审查的工作中概述的规则可能构成进一步开发经济高效、用户友好、有限校准或免校准电位型SC-ISEs以立即实现可靠离子分析的基础。