School of Engineering and Science, Jacobs University, P.O. Box 750561, 28725 Bremen, Germany.
Inorg Chem. 2011 Nov 21;50(22):11667-75. doi: 10.1021/ic201652h. Epub 2011 Oct 17.
We have synthesized and structurally characterized three pyridylethylidene-functionalized diphosphonate-containing polyoxomolybdates, {Mo(VI)O(3)}(2){Mo(V)(2)O(4)}{HO(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(2) (1), {Mo(VI)(2)O(6)}(2){Mo(V)(2)O(4)}{O(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(2) (2), and {Mo(V)(2)O(4)(H(2)O)}(4){O(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(4) (3). Polyanions 1-3 were prepared in a one-pot reaction of the dinuclear, dicationic {Mo(V)(2)O(4)(H(2)O)(6)}(2+) with 1-hydroxo-2-(3-pyridyl)ethylidenediphosphonate (Risedronic acid) in aqueous solution. Polyanions 1 and 2 are mixed-valent Mo(VI/V) species with open tetranuclear and hexanuclear structures, respectively, containing two diphosphonate groups. Polyanion 3 is a cyclic octanuclear structure based on four {Mo(V)(2)O(4)(H(2)O)} units and four diphosphonates. Polyanions 1 and 2 crystallized as guanidinium salts C(NH(2))(3)H[{Mo(VI)O(3)}(2){Mo(V)(2)O(4)}{HO(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(2)]·13H(2)O (1a) and C(NH(2))(3)H(2)[{Mo(VI)(2)O(6)}(2){Mo(V)(2)O(4)}{O(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(2)]·10H(2)O (2a), whereas polyanion 3 crystallized as a mixed sodium-guanidinium salt, Na(8)C(NH(2))(3)[{Mo(V)(2)O(4)(H(2)O)}(4){O(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(4)]·8H(2)O (3a). The compounds were characterized in the solid state by single-crystal X-ray diffraction, IR spectroscopy, and thermogravimetric and elemental analyses. The formation of polyanions 1 and 3 is very sensitive to the pH value of the reaction solution, with exclusive formation of 1 above pH 7.4 and 3 below pH 6.6. Detailed solution studies by multinuclear NMR spectrometry were performed to study the equilibrium between these two compounds. Polyanion 2 was insoluble in all common solvents. Detailed computational studies on the solution phases of 1 and 3 indicated the stability of these polyanions in solution, in complete agreement with the experimental findings.
我们合成并结构表征了三种吡啶亚乙基二膦酸酯功能化的含多钼酸盐,{Mo(VI)O(3)}(2){Mo(V)(2)O(4)}{HO(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(2) (1),{Mo(VI)(2)O(6)}(2){Mo(V)(2)O(4)}{O(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(2) (2),和{Mo(V)(2)O(4)(H(2)O)}(4){O(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(4) (3)。多阴离子 1-3 是通过二核、二价阳离子[{Mo(V)(2)O(4)(H(2)O)(6)}(2+)]与 1-羟基-2-(3-吡啶基)亚乙基二膦酸酯(雷迪诺酸)在水溶液中的一锅反应制备的。多阴离子 1 和 2 是混合价态的 Mo(VI/V)物种,分别具有开放的四核和六核结构,包含两个二膦酸酯基团。多阴离子 3 是基于四个{Mo(V)(2)O(4)(H(2)O)}单元和四个二膦酸酯的环状八核结构。多阴离子 1 和 2 结晶为胍盐C(NH(2))(3)H[{Mo(VI)O(3)}(2){Mo(V)(2)O(4)}{HO(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(2)]·13H(2)O (1a) 和C(NH(2))(3)H(2)[{Mo(VI)(2)O(6)}(2){Mo(V)(2)O(4)}{O(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(2)]·10H(2)O (2a),而多阴离子 3 结晶为混合的钠-胍盐,Na(8)C(NH(2))(3)[{Mo(V)(2)O(4)(H(2)O)}(4){O(3)PC(O)(CH(2)-3-C(5)NH(4))PO(3)}(4)]·8H(2)O (3a)。这些化合物在固态通过单晶 X 射线衍射、红外光谱和热重分析以及元素分析进行了表征。多阴离子 1 和 3 的形成对反应溶液的 pH 值非常敏感,在 pH 值高于 7.4 时仅形成 1,在 pH 值低于 6.6 时仅形成 3。通过多核 NMR 光谱进行了详细的溶液研究,以研究这两种化合物之间的平衡。多阴离子 2 不溶于所有常见溶剂。对 1 和 3 的溶液相的详细计算研究表明了这些多阴离子在溶液中的稳定性,与实验结果完全一致。