| Literature DB >> 32138188 |
Michal Zabiszak1, Martyna Nowak1, Zbigniew Hnatejko1, Jakub Grajewski1, Kazuma Ogawa2, Malgorzata T Kaczmarek1, Renata Jastrzab1.
Abstract
Binary complexes of tartaric acid with lanthanide(III) ions were investigated. The studies have been performed in aqueous solution using the potentiometric method with computer analysis of the data for detection of the complexes set, determination of the stability constants of these compounds. The mode of the coordination of complexes found was determined using spectroscopy, which shows: Infrared, circular dichroism, ultraviolet, visible as well as luminescence spectroscopy. The overall stability constants of the complexes as well as the equilibrium constants of the reaction were determined. Analysis of the equilibrium constants of the reactions and spectroscopic data allowed the effectiveness of the carboxyl groups in the process of complex formation.Entities:
Keywords: lanthanide(III) ions complexes; potentiometric measurements; spectroscopic studies; tartaric acid
Mesh:
Substances:
Year: 2020 PMID: 32138188 PMCID: PMC7179146 DOI: 10.3390/molecules25051121
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Formulae of tartaric acid: (a) Enantiomer L-(+); (b) enantiomer D-(-); (c) meso form.
Protonation constants of tartaric acid (standard deviation are given in parenthesis).
| Species | Overall Protonation Constants (log | Reactions | Successive Protonation Constants (log | |
|---|---|---|---|---|
| H2Tar | 7.50(4) | 6.78 | HTar- + H+ ⇆ H2Tar | 2.59 |
| HTar | 4.91(4) | 3.96 | Tar2- + H+ ⇆ HTar- | 4.91 |
Figure 2Distribution diagrams for the Ln(III)/Tar systems: (a) La(III)/Tar; (b) Nd(III)/Tar; (c) Eu(III)/Tar; (d) Gd(III)/Tar; (e) Tb(III)/Tar; (f) Ho(III)/Tar; (g) Lu(III)/Tar; 1 - Ln3+; 2 – Ln(HTar)(Tar); 3 – Ln(Tar)2; 4 – Ln(Tar)2(OH); 5 – Ln(Tar)(OH);6 – Ln(Tar)(OH)2; 7 – Ln(HTar); 8 – Ln(Tar); 9 - Ln(OH)2 the percentage of the species refers to lanthanide(III) ions; cLn(III) ion = 1 × 10-3 mol dm-3; cTar = 1 x 10-3 mol dm−3.
Overall stability constants (logβ) and equilibrium constants of formation (logKe) of binary complexes in the system of Ln(III)/tartaric acid (standard deviation are given in parenthesis).
| Species | Overall Stability Constants (log | Reaction | Equilibrium Constants (log |
|---|---|---|---|
| La(HTar) | 8.10(9) | La3+ + H(Tar) ⇆ La(HTar) | 3.19 |
| La(Tar) | 4.35(5) | La3+ + Tar ⇆ La(Tar) | 4.35 |
| La(Tar)(OH) | −3.04(5) | La(Tar) +H2O ⇆ La(Tar)(OH) + H+ | 6.36 |
| Nd(HTar)(Tar) | 12.66(3) | Nd3+ + H(Tar) + Tar ⇆ Nd(HTar)(Tar) | 7.75 |
| Nd(Tar)2 | 7.70(7) | Nd3+ + 2Tar ⇆ Nd(Tar)2 | 7.70 |
| Nd(Tar)2(OH) | 1.55(5) | Nd(Tar)2 + H2O ⇆ Nd(Tar)2(OH) + H+ | 7.61 |
| Nd(Tar)(OH) | −2.89(4) | Nd3+ + Tar + H2O ⇆ Nd(Tar)(OH) + H+ | 10.87 |
| Eu(HTar)(Tar) | 12.68(4) | Eu3+ + H(Tar) + Tar ⇆ Eu(HTar)(Tar) | 7.77 |
| Eu(Tar)2 | 8.29(5) | Eu3+ + 2Tar ⇆ Eu(Tar)2 | 8.29 |
| Eu(Tar)2(OH) | 2.53(4) | Eu(Tar)2 + H2O ⇆ Eu(Tar)2(OH) + H+ | 8.00 |
| Eu(Tar)(OH) | −2.60(2) | Eu3+ + Tar + H2O ⇆ Eu(Tar)(OH) + H+ | 11.16 |
| Eu(Tar)(OH)2 | −13.87(6) | Eu(Tar)(OH) + H2O ⇆ Eu(Tar)(OH)2 + H+ | 2.50 |
| Gd(Tar)2 | 7.65(4) | Gd3+ + 2Tar ⇆ Gd(Tar)2 | 7.65 |
| Gd(Tar)2(OH) | 1.58(7) | Gd(Tar)2 + H2O ⇆ Gd(Tar)2(OH) + H+ | 7.69 |
| Gd(Tar)(OH) | −2.94(5) | Gd3+ + Tar + H2O ⇆ Gd(Tar)(OH) + H+ | 10.82 |
| Tb(HTar)(Tar) | 12.77(4) | Tb3+ + H(Tar) + Tar ⇆ Tb(HTar)(Tar) | 7.86 |
| Tb(Tar)2 | 8.51(4) | Tb3+ + 2Tar ⇆ Tb(Tar)2 | 8.51 |
| Tb(Tar)2(OH) | 2.89(4) | Tb(Tar)2 + H2O ⇆ Tb(Tar)2(OH) + H+ | 8.15 |
| Tb(Tar)(OH) | −2.19(2) | Tb3+ + Tar + H2O ⇆ Tb(Tar)(OH) + H+ | 11.57 |
| Tb(Tar)(OH)2 | −13.30(5) | Tb(Tar)(OH) + H2O ⇆ Tb(Tar)(OH)2 + H+ | 2.66 |
| Ho(HTar)(Tar) | 13.23(4) | Ho3+ + H(Tar) + Tar ⇆ Ho(HTar)(Tar) | 8.32 |
| Ho(Tar)2 | 8.83(6) | Ho3+ + 2Tar ⇆ Ho(Tar)2 | 8.83 |
| Ho(Tar)2(OH) | 3.62(6) | Ho(Tar)2 + H2O ⇆ Ho(Tar)2(OH) + H+ | 8.56 |
| Ho(Tar)(OH) | −1.69(3) | Ho3+ + Tar + H2O ⇆ Ho(Tar)(OH) + H+ | 12.07 |
| Ho(Tar)(OH)2 | −13.19(9) | Ho(Tar)(OH) + H2O ⇆ Ho(Tar)(OH)2 + H+ | 2.26 |
| Lu(HTar)(Tar) | 13.07(4) | Lu3+ + H(Tar) + Tar ⇆ Ho(HTar)(Tar) | 8.16 |
| Lu(Tar)2 | 9.05(5) | Lu3+ + 2Tar ⇆ Ho(Tar)2 | 9.05 |
| Lu(Tar)2(OH) | 4.25(6) | Lu(Tar)2 + H2O ⇆ Lu(Tar)2(OH) + H+ | 8.96 |
| Lu(Tar)(OH) | −1.11(4) | Lu3+ + Tar + H2O ⇆ Ho(Tar)(OH) + H+ | 12.65 |
| Lu(Tar)(OH)2 | −12.31(7) | Lu(Tar)(OH) + H2O ⇆ Lu(Tar)(OH)2 + H+ | 2.57 |
Spectroscopic data of systems Nd(III)/Tar.
| Species | pH | λmax[nm] | ε [mol⋅dm−3⋅cm−1] |
|---|---|---|---|
| Nd(III) | 4.2 | 794.00 | 12.0 |
| 800.85 | 6.0 | ||
| Nd(HTar)(Tar) | 4.2 | 795.05 | 11.0 |
| 801.14 | 6.4 | ||
| Nd(Tar)2 | 5.5 | 795.70 | 9.7 |
| 798.93 | 8.7 |
Figure 3IR spectra of selected systems: (a) Nd(III)/Tar; (b) Eu(III)/Tar.
Figure 4The absorption spectrum of Nd(III) ion in the system Nd(III)/Tar in the range of the transition 4I9/2 – 2H9/2.
Figure 5Changes in the emission spectra of the systems: (a) Eu(III)/Tar at pH 3.8, 5.0, 7.7, 10.0, and 11.00; (b) Tb(III)/Tar at pH 3.8, 5.0, and 6.6.
The η = Iem618/Iem593 of binary complexes in Eu(III)/tartaric acid system.
| Species | η = Iem618/Iem593 |
|---|---|
| Eu(HTar)(Tar) | 1.18 |
| Eu(Tar)2 | 1.89 |
| Eu(Tar)2(OH) | 2.55 |
| Eu(Tar)(OH) | 2.28 |
| Eu(Tar)(OH)2 | 2.22 |
Δε values for all Ln(III)/Ta systems at different pH values.
| La(III)/Tar | Nd(III)/Tar | Eu(III)/Tar | Gd(III)/Tar | Ho(III)/Tar | Tb(III)/Tar | Lu(III)/Tar |
|---|---|---|---|---|---|---|
| pH = 3.0 | pH = 4.2 | pH = 3.8 | pH = 3.65 | pH = 3.8 | pH = 3.8 | |
| pH = 5.8 | pH = 5. 55 | pH = 5.1 | pH = 5.0 | pH = 4.8 | pH = 5.0 | pH = 4.5 |
| pH = 7.0 | pH = 6.8 | pH = 6.8 | pH = 6.3 | pH = 6.6 | pH = 5.8 | |
| pH = 8.3 | pH = 10.0 | pH = 10.0 | pH = 9.9 | pH = 9.7 | ||
| pH = 11.0 | pH = 11.0 | pH = 11.0 | pH = 11.0 | pH = 11.0 | pH = 11.0 |
Figure 6The Circular dichroism (CD) spectra of the systems (a) La/Tar; (b) Ho/Tar.
Hydrolysis constants of lanthanide(III) ions (standard deviations are given in parenthesis).
| Overall Hydrolysis Constants (log | |||
|---|---|---|---|
| M(OH) | M(OH)2 | M(OH)3 | |
|
| −15.54(1) | ||
|
| −16.12(2) | −25.53(4) | |
|
| −15.15(3) | −24.31(6) | |
|
| −9.30(1) | −17.74(2) | −28.12(6) |
|
| −15.56(1) | ||
|
| −15.62(1) | ||
|
| −14.93(1) | ||