Boglio Cécile, Lenoble Géraldine, Duhayon Carine, Hasenknopf Bernold, Thouvenot René, Zhang Cheng, Howell Robertha C, Burton-Pye Benjamin P, Francesconi Lynn C, Lacôte Emmanuel, Thorimbert Serge, Malacria Max, Afonso Carlos, Tabet Jean-Claude
Laboratoire de Chimie Inorganique et Matériaux Moléculaires, UMR CNRS 7071, Institut de Chimie Moléculaire FR 2769, Université Pierre et Marie Curie, Case Courrier 42, 4 place Jussieu, 75005 Paris, France.
Inorg Chem. 2006 Feb 6;45(3):1389-98. doi: 10.1021/ic051679g.
The incorporation of lanthanides into polyoxometalates provides entry to new classes of potentially useful materials that combine the intrinsic properties of both constituents. To utilize the [alpha1-Ln(H2O)4P2W17O61]7- species in applications of catalysis and development of luminescent materials, the chemistry of this family of lanthanide polyoxometalates in organic solvents has been developed. Organic-soluble polyoxometalate-lanthanide complexes TBA5H2[alpha1-Ln(H2O)4P2W17O61] (Ln = La(III), Sm(III), Eu(III), Yb(III)) were prepared and characterized by elemental analysis, acid-base titration, IR, 31P NMR, and mass spectrometry. The synthetic procedure involves a cation metathesis reaction in aqueous solution under strict pH control. A solid-liquid-phase transfer protocol yielded a unique species (TBA)8K3[Yb(alpha1-YbP2W17O61)2] with three ytterbium ions and two [alpha1-P2W17O61]10- polyoxotungstates. A centrosymmetric dimeric complex [{alpha1-La(H2O)4P2W17O61}2]14- was crystallized from aqueous solution and characterized by X-ray diffraction. ESI mass spectral analysis of the complexes TBA5H2[alpha1-Ln(H2O)4P2W17O61] shows that similar dimers exist in organic solution, in particular for the early lanthanides. Fragmentation in the mass spectrometer of the complexes from dry acetonitrile solution involves double protonation of an oxo ligand and loss of one water molecule. Low mass tungstate fragments combine into [(WO3)n]2- (n = 1-5) ions and their condensation products with phosphate. Reaction of TBA5H2[alpha1-Eu(H2O)4P2W17O61] with 1,10-phenanthroline or 2,2'-bipyridine showed an increase of the europium luminescence. This result is explained by the formation of a ternary complex of [alpha1-Eu(H2O)4P2W17O61]7- and two sensitizing ligands.
将镧系元素掺入多金属氧酸盐中可得到新型潜在有用材料,这些材料结合了两种成分的固有特性。为了在催化应用和发光材料开发中利用[α1-Ln(H2O)4P2W17O61]7-物种,已开展了该镧系多金属氧酸盐家族在有机溶剂中的化学研究。制备了有机可溶性多金属氧酸盐-镧系配合物TBA5H2[α1-Ln(H2O)4P2W17O61](Ln = La(III)、Sm(III)、Eu(III)、Yb(III)),并通过元素分析、酸碱滴定、红外光谱、31P核磁共振和质谱对其进行了表征。合成过程涉及在严格pH控制下的水溶液中的阳离子复分解反应。固-液相转移方案产生了一种独特的物种(TBA)8K3[Yb(α1-YbP2W17O61)2],它含有三个镱离子和两个[α1-P2W17O61]10-多聚钨酸盐。一种中心对称的二聚配合物[{α1-La(H2O)4P2W17O61}2]14-从水溶液中结晶出来,并通过X射线衍射进行了表征。对配合物TBA5H2[α1-Ln(H2O)4P2W17O61]的电喷雾质谱分析表明,类似的二聚体存在于有机溶液中,特别是对于早期镧系元素。来自干燥乙腈溶液的配合物在质谱仪中的碎片化涉及氧配体的双质子化和一个水分子的损失。低质量的钨酸盐碎片结合成[(WO3)n]2-(n = 1-5)离子及其与磷酸盐的缩合产物。TBA5H2[α1-Eu(H2O)4P2W17O61]与1,10-菲咯啉或2,2'-联吡啶的反应显示铕发光增强。这一结果可通过[α1-Eu(H2O)4P2W17O61]7-与两个敏化配体形成三元配合物来解释。