Department of Inorganic and Analytical Chemistry, University of Geneva, Quai Ernest-Ansermet 30, CH-1211 Geneva, Switzerland; Center of Excellence for Innovation in Analytical Science and Technology, Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.
Department of Inorganic and Analytical Chemistry, University of Geneva, Quai Ernest-Ansermet 30, CH-1211 Geneva, Switzerland.
Anal Chim Acta. 2018 Oct 31;1029:37-43. doi: 10.1016/j.aca.2018.05.012. Epub 2018 May 7.
Potassium ion concentration can be successfully determined volumetrically by moving the titration from a homogeneous phase to a two phase solvent system. This is because potassium can be readily complexed in a selective and thermodynamically stable manner by ionophores such as valinomycin. Previous work demonstrated the successful titration of potassium by ion-exchange into an organic phase containing valinomycin, but the sample itself served as titrant, which is not sufficiently practical for routine applications. This problem is overcome here by a co-extraction based approach, with the sodium salt of the water soluble lipophilic anion tetraphenylborate as titrant. The extraction of potassium tetraphenylborate must be preferred over that of the hydrogen ion-tetraphenylborate pair, which is used to indicate the endpoint by the presence of a lipophilic indicator in the organic phase. This is controlled by the sample pH, which for the conditions chosen here is around 7 for optimal sharpness and accuracy of the endpoint. The approach is demonstrated in a colorimetric detection approach, by use of a tethered digital camera and subsequent automated analysis of the resulting image files. The potassium analysis in a variety of samples is successfully demonstrated, including blood serum.
通过将滴定从均相转移到两相溶剂系统,可以成功地通过容量法确定钾离子浓度。这是因为钾离子可以通过缬氨霉素等离子载体以选择性和热力学稳定的方式容易地络合。先前的工作已经证明了通过离子交换将钾滴定到含有缬氨霉素的有机相中是成功的,但样品本身作为滴定剂,对于常规应用来说不够实用。通过共萃取的方法克服了这个问题,其中水溶性亲脂性阴离子四苯硼酸钠的钠盐用作滴定剂。钾四苯硼酸盐的萃取必须优先于氢离子-四苯硼酸盐对的萃取,后者用于通过在有机相中使用亲脂性指示剂来指示终点。这通过样品 pH 值来控制,对于这里选择的条件,最佳的终点敏锐度和准确性的 pH 值约为 7。该方法通过使用连接的数码相机和随后对生成的图像文件的自动分析,在比色检测方法中得到了证明。成功地证明了各种样品中的钾分析,包括血清。