Determination of Manganese(II) in Wines by Stripping Voltammetry on Solid Electrodes
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URI (для ссылок/цитирований):
https://elib.sfu-kras.ru/handle/2311/33080Автор:
Сурсякова, В. В.
Бурмакина, Г. В.
Рубайло, А. И.
Коллективный автор:
Институт цветных металлов и материаловедения
Кафедра аналитической и органической химии
Дата:
2016-04Журнал:
Journal of Chromatographic ScienceКвартиль журнала в Scopus:
Q3Квартиль журнала в Web of Science:
Q3Библиографическое описание:
Сурсякова, В. В. Determination of Manganese(II) in Wines by Stripping Voltammetry on Solid Electrodes [Текст] / В. В. Сурсякова, Г. В. Бурмакина, А. И. Рубайло // Journal of Chromatographic Science. — 2016. — Т. 54 (№ 7). — С. 1253-1262Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.
Аннотация:
The influence of analyte concentration when compared with the concentration of a charged ligand
in background electrolyte (BGE) on the measured values of electrophoretic mobilities and stability
constants (association, binding or formation constants) is studied using capillary electrophoresis
(CE) and a dynamic mathematical simulator of CE. The study is performed using labile complexes
(with fast kinetics) of iron (III) and 5-sulfosalicylate ions (ISC) as an example. It is shown that because
the ligand concentration in the analyte zone is not equal to that in BGE, considerable changes in the
migration times and electrophoretic mobilities are observed, resulting in systematic errors in the
stability constant values. Of crucial significance is the slope of the dependence of the electrophoretic
mobility decrease on the ligand equilibrium concentration.Without prior information on this dependence
to accurately evaluate the stability constants for similar systems, the total ligand concentration
must be at least >50–100 times higher than the total concentration of analyte. Experimental ISC peak
fronting and the difference between the direction of the experimental pH dependence of the
electrophoretic mobility decrease and the mathematical simulation allow assuming the presence
of capillary wall interaction.