Zinnat A Begum, Ismail M M Rahman, Tsugiko Takase, Hiroshi Hasegawa
Journal: Journal of inorganic biochemistry 2020;195():141-148
PMID: 30952083
The formation and equilibria of Sr, Mg, Ca, Ba, and Y (M) complexes with a mixed-chelator comprising two biodegradable chelators (GLDA, L, 2-[bis(carboxymethyl)amino] pentanedioic acid; HIDS, L, 2-(1,2-dicarboxyethylamino)-3-hydroxy-butanedioic acid) in an aqueous matrix was evaluated. The potentiometric measurement results (ionic strength, 0.10 M; temperature, 25 ± 0.1 °C) confirmed the formation of 1:1:1 (M:L:L) complexes and the experimental data sets were further used to derive the equilibrium constants for the ternary complexes. The [MHLL] complex was the dominant ternary complex with Sr, Mg, Ca, and Ba, while Y formed [M(OH)LL] as the principal ternary species. The trend in the overall formation constants of the ML (L, L:L = 1:1) complexes was in the order: Y > Ca > Mg > Sr > Ba. The ternary complexation trend was interpreted using the corresponding atomic radii and solution-phase electronegativities of the elements. The modes of interaction between the chelators and cations in the ML systems were subsequently deduced, and evaluated by using Gaussian 16W program. The relative stabilities of the ternary complexes (ΔlogK) were interpreted by comparison with the stabilities of the corresponding binaries, with negative ΔlogK values observed for all the ML complexes.
Copyright © 2019 Elsevier Inc. All rights reserved.
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