Department of Inorganic and Analytical Chemistry, University of Szeged, 7 Dóm tér, H-6720 Szeged, Hungary.
Department of Physical Chemistry and Material Science, University of Szeged, 1 Rerrich Béla tér, H-6720 Szeged, Hungary and Material and Solution Structure Research Group, Institute of Chemistry, University of Szeged, H-6720 Szeged, Hungary.
Dalton Trans. 2017 May 9;46(18):6049-6058. doi: 10.1039/c7dt00909g.
The complex formation between Nd(iii) and d-gluconate (Gluc) is of relevance in modelling the chemical equilibria of radioactive waste repositories. In the present work, the formation of NdGlucH complexes at 25 °C and pH = 2-8 was studied via spectrophotometry, potentiometry, freezing point depression, conductometry and NMR spectroscopy. In addition to the four mononuclear complexes (pq-r = 110, 120, 130 and 11-2), the formation of two binuclear, so far unknown complexes (pq-r = 23-2 and 24-2) was revealed. Between pH = 5.5 and 7, with the increasing metal ion and ligand concentrations, the NdGlucH species becomes progressively predominant. Under the conditions characteristic of waste repositories, however, the formation of these complexes can be neglected. Regarding the binding sites of Gluc, C2-OH and C3-OH groups, in addition to the carboxylate ion, were identified from H and C spectroscopic measurements. Above pH = 6, the metal-ligand interactions became stronger implying the formation of deprotonated complexes involving the C2-OH group, while the displacement of the second proton at the C3-OH is also possible. The metal ion induced deprotonation of the ligand was confirmed by DFT calculations.
镱(III)与葡萄糖酸(Gluc)的配合物的形成对于模拟放射性废物库的化学平衡具有重要意义。在本工作中,通过分光光度法、电位法、冰点降低法、电导率法和 NMR 光谱法研究了 25°C 和 pH = 2-8 下 NdGlucH 配合物的形成。除了四个单核配合物(pq-r = 110、120、130 和 11-2)外,还揭示了两个双核的、迄今未知的配合物(pq-r = 23-2 和 24-2)的形成。在 pH = 5.5 到 7 之间,随着金属离子和配体浓度的增加,NdGlucH 物种逐渐占主导地位。然而,在废物库的条件下,可以忽略这些配合物的形成。关于 Gluc 的结合位点,除了羧酸盐离子,C2-OH 和 C3-OH 基团也可以从 H 和 C 光谱测量中识别出来。在 pH 值高于 6 时,金属-配体相互作用增强,表明形成了涉及 C2-OH 基团的去质子化配合物,而 C3-OH 上的第二个质子的取代也是可能的。通过 DFT 计算证实了金属离子诱导配体的去质子化。