
Confirmation of organic compounds hydrates formation under the reversed-phase HPLC conditions
Author(s) -
T. A. Kornilova,
Abdennour Derouiche,
И. Г. Зенкевич
Publication year - 2020
Publication title -
analitika i kontrolʹ
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.167
H-Index - 6
eISSN - 2073-1450
pISSN - 2073-1442
DOI - 10.15826/analitika.2020.24.4.006
Subject(s) - chemistry , analyte , methanol , column chromatography , high performance liquid chromatography , solvent , phase (matter) , chromatography , hydrate , acetonitrile , reversed phase chromatography , organic chemistry
The confirmation of the correspondence of the detected forms of analytes to their molecular structures seems to be one of the principal problems of analytical chemistry. The previous analysis of the series of drugs by reversed-phase HPLC allowed revealing that the retention regularities of the complex polyfunctional organic compounds containing sulfonamide groups -SO2-N 0.999. Yet, if additional chemical transformations of analytes took place, namely reversible formation of hydrates (or variations of their composition) due to the presence of water in an eluent, it led to the deviations of recurrent dependencies (*) from linearity. Three sulfonamides under characterization corresponded to different kinds of such deviations: non-linearity within the whole range Сmin < С < Сmax (amide I), presence of two linear dependencies instead of one (amide II), and linearity within the whole range Сmin < С < Сmax (amide III). First two cases corresponded to the interconversion of anhydrous forms and hydrates, or (less probable) different hydrates, while the latter meant the existence of analyte in the single form (probably hydrate). Thus, the analysis of model compounds confirmed that the presence of the polar functionality -SO2-N< was just the reason of hydrate formation in water solutions.