Department of Biomedical Engineering , The University of Memphis , Memphis , Tennessee 38152 , United States.
ACS Sens. 2019 Mar 22;4(3):549-561. doi: 10.1021/acssensors.8b01651. Epub 2019 Mar 10.
In this paper, we raise questions that researchers have to ask if they intend to replace a conventional reference electrode with an ionic liquid-based reference electrode and try to answer these questions based on our experiences and literature data. Among these questions, the most important is which ionic liquid should be used. However, beyond the chemical composition of the ionic liquid, to realize all the potential benefits of ionic-liquid based reference electrodes, there are additional, equally important considerations. Through examples we will show the importance of the (i) purity of the ionic liquid and the consequences of deviations from its stoichiometric salt composition, (ii) form of implementation of the ionic liquid-based reference electrode membrane (free-flowing salt bridge, or ionic liquid embedded in a membrane), (iii) membrane/gelling agent material and its composition, and (iv) experimental conditions (steady state or flowing conditions) under which it will be used. Finally, we recommend methods to test the performance criteria of the ionic liquid-based reference electrodes.
在本文中,我们提出了一些问题,研究人员如果打算用基于离子液体的参比电极替代传统参比电极,就必须要问这些问题,并尝试根据我们的经验和文献数据来回答这些问题。在这些问题中,最重要的是应该使用哪种离子液体。然而,除了离子液体的化学成分之外,要实现基于离子液体参比电极的所有潜在优势,还有其他同样重要的考虑因素。我们将通过实例展示离子液体的(i)纯度以及偏离其化学计量盐组成的后果,(ii)基于离子液体的参比电极膜的实施形式(自由流动盐桥,或嵌入膜中的离子液体),(iii)膜/胶凝剂材料及其组成,以及(iv)实验条件(稳态或流动条件)的重要性,在这些条件下将使用该参比电极。最后,我们推荐了一些测试基于离子液体参比电极性能标准的方法。