Departmento de Química, Universidade de Coimbra, 3004-535, Coimbra, Portugal.
Dalton Trans. 2009 Nov 21(43):9616-24. doi: 10.1039/b905933d. Epub 2009 Sep 26.
Multinuclear ((1)H, (13)C, (17)O, (31)P, (95)Mo, (183)W) magnetic resonance spectroscopy (1D and 2D) has been used to study the complexation of molybdate(VI) and tungstate(VI) with 3-phospho-D-glyceric and 2-phospho-D-glyceric acids. 3-Phospho-D-glyceric acid forms four and five complexes, respectively, with molybdate and tungstate. These have MO(2)(2+) centres, and involve the carboxylate and the adjacent OH groups. Two isomeric 1:2 (metal-ligand) complexes are detected, in addition to one mononuclear species having MO(3) centres and involving the ligand in a tridentate chelation and a dominant 12:4 species with both tungstate(VI) and molybdate(VI). The dominant 12:4 species can be seen as two 1:2 complexes bound together in a ring through two diphosphometalate moieties, derived from heptamolybdate or heptatungstate, respectively, by inclusion of two phosphate groups from the ligands. Tungstate is also able to form an additional 2:1 tridentate species. 2-Phospho-D-glyceric acid does not interact with tungstate but is able to form one phosphomolybdate species with molybdate, which can be regarded as a heptamolybdate derivative. Density functional theory (DFT) calculations were performed for 1:2 complexes, including calculations on the relative energies of the 1:2 complexes detected in related systems, to validate previously proposed structures. The results are compared with those obtained from multinuclear NMR spectroscopy.
多核(1H、13C、17O、31P、95Mo、183W)磁共振波谱(1D 和 2D)已被用于研究钼酸盐(VI)和钨酸盐(VI)与 3-磷酸-D-甘油酸和 2-磷酸-D-甘油酸的络合作用。3-磷酸-D-甘油酸分别与钼酸盐和钨酸盐形成四个和五个配合物。这些配合物具有 MO(2)(2+)中心,涉及羧酸盐和相邻的 OH 基团。除了一种单核物种具有 MO(3)中心并涉及配体的三齿螯合和主要的 12:4 物种(同时含有钨酸盐(VI)和钼酸盐(VI))之外,还检测到两种异构的 1:2(金属-配体)配合物。主要的 12:4 物种可以看作是两个 1:2 配合物通过两个二磷钼酸盐部分结合在一起形成一个环,这些部分分别来自七钼酸盐或七钨酸盐,通过包含两个来自配体的磷酸基团。钨酸盐也能够形成额外的 2:1 三齿物种。2-磷酸-D-甘油酸不与钨酸盐相互作用,但能够与钼酸盐形成一种磷钼酸盐物种,可以将其视为七钼酸盐衍生物。进行了密度泛函理论(DFT)计算,包括对在相关系统中检测到的 1:2 配合物的相对能量的计算,以验证先前提出的结构。结果与多核 NMR 光谱学的结果进行了比较。