首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Studies of the Complexation of Gluconate with Th(IV) in Acidic Solutions: Stability Constant Determination and Coordination Mode Analysis
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Studies of the Complexation of Gluconate with Th(IV) in Acidic Solutions: Stability Constant Determination and Coordination Mode Analysis

机译:葡萄糖酸盐与酸性溶液中葡萄糖酸盐的络合研究:稳定性恒定测定和协调模式分析

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摘要

Gluconate is a multidentate ligand and its complexation with actinides has received increasing attention because of its existence in high level nuclear wastes as well as in nuclear waste repositories. In this work, the complexation of gluconate with Th(IV) was studied in deuterated water (D2O) by pD titrations and nuclear magnetic resonance (NMR) spectroscopy. In the pC(D) range 2.0-4.6, gluconate (Ga-4(-)) forms two 1:1 complexes with Th(IV), Th(GD(3))(2+) and Th(GD(2))(+). Their stability constants were determined to be log beta((D))(101(-1)) = 1.04 +/- 0.12 for Th4+ + GD(4)(-) = Th(GD(3))(3+) + D+ and log beta((D))(101(-2)) = -(1.31 +/- 0.09) for Th4+ + GD(4)(-) Th(GD(2))(+) + 2D(+) at I = 1.0 mol.L-1 NaClO4 and t = 22 degrees C. The coordination modes of these two complexes were also analyzed. In both complexes, the tridentate chelation forms through the binding of Th(IV) to one oxygen from the carboxylate group and two oxygens from alpha- and gamma-hydroxyl groups. The difference is that in Th(GD(2))(+), both alpha- and gamma-hydroxyl groups deprotonate, and in Th(GD(3))(2+), only the alpha-hydroxyl group deprotonates.
机译:葡萄糖酸盐是一种多夜间配体,其与弧菌的络合因其在高水平的核废物以及核废料库中存在而受到影响。在这项工作中,通过PD滴定和核磁共振(NMR)光谱在氘化水(D2O)中研究了葡萄糖酸盐与TH(IV)的络合。在PC(d)范围内2.0-4.6中,葡萄糖酸盐(Ga-4( - ))与Th(iv),Th(Gd(3))(2+)和Th(GD(2))形成两个1:1络合物)(+)。将其稳定性常数确定为Logβ((D))(101(-1))= 1.04 +/- 0.12,用于Th4 + + Gd(4)( - )= Th(Gd(3))(3+)+ D +和Logβ((D))(101(-2))= - (1.31 +/- 0.09),适用于Th4 + + Gd(4)( - )TH(Gd(2))(+)+ 2D(+)在I = 1.0mol.L-1 NaClO4和T = 22摄氏度。还分析了这两种复合物的配位模式。在两个复合物中,将三叉戟螯合剂通过Th(iv)与羧酸盐基团的一个氧的结合和来自α-和γ-羟基的两种氧的结合形成。差异是,在Th(Gd(2))(+)中,α-和γ-羟基脱质子酸盐,并且在Th(Gd(3))(2+)中,仅α-羟基去质子酸盐。

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