Fernández D, García-Seijo M I, Bardají M, Laguna A, García-Fernández M E
Departamento de Química Inorgánica, Universidad de Santiago de Compostela, E-15782, Santiago de Compostela, Spain.
Dalton Trans. 2008 May 21(19):2633-42. doi: 10.1039/b716736a. Epub 2008 Mar 31.
Complexes of the type [Au2(micro-PP3)2]X2 [X=Cl (), Br (), I ()], Ag2(micro-PP3)22 (), Ag(PP3)Cl (), M3(micro-PP3)X3 [M=Au, X=Cl (), Br (), I (); M=Ag, X=NO3 ()] and Au4(micro-PP3)X4 [X=Cl (), Br (), I ()] have been prepared by interaction between gold(I) or silver(I) salts and the ligand tris[2-(diphenylphosphino)ethyl]phosphine (PP3) in the appropriate molar ratio. Microanalysis, mass spectrometry, IR and NMR spectroscopies and conductivity measurements were used for characterization. and are ionic dinuclear species containing four-coordinate gold(i) and four/three coordinate silver(i), respectively. Solutions of behave as mixtures of complexes in a 2:1 [Au2(micro-PP3)X2; X=Cl(), Br(), I()] and 4:1 () metal to ligand ratio. and react with free PP(3) in solution to generate the ionic compounds and , respectively. Complexes and , with four linear PAuX fragments per molecule, were shown by X-ray diffraction to consist of dimeric aggregates via close intermolecular gold(I)gold(I) contacts of 3.270 A () and 3.184 A (). The resultant octanuclear systems have an inversion center with two symmetry-related gold(I) atoms being totally out of the aurophilic area and represent a new form of aggregation compared to that found in other halo complexes of gold(I) containing polyphosphines. The luminescence properties of the ligand and complexes, in the solid state, have been studied. Most of the gold systems display intense luminescent emission at room and low temperature. The influence of the halogen on the aurophilic contacts of compounds with a 4:1 metal to ligand ratio results in different photophysical properties, while and are luminescent complex is nonemissive. The luminescence increases with increasing the phosphine/metal ratio affording for complexes , without aurophilic contacts, the stronger emissions. Silver complexes and are nonemissive at room temperature and show weaker emissions than gold(I) species at 77 K.
通过金(I)或银(I)盐与配体三[2-(二苯基膦基)乙基]膦(PP3)以适当的摩尔比相互作用,制备了[Au2(μ-PP3)2]X2 [X = Cl(),Br(),I()]、Ag2(μ-PP3)22 ()、Ag(PP3)Cl ()、M3(μ-PP3)X3 [M = Au,X = Cl(),Br(),I();M = Ag,X = NO3 ()]和Au4(μ-PP3)X4 [X = Cl(),Br(),I()]类型的配合物。微量分析、质谱、红外和核磁共振光谱以及电导率测量用于表征。[Au2(μ-PP3)2]X2和Ag2(μ-PP3)22是离子型双核物种,分别含有四配位的金(I)和四/三配位的银(I)。[Au2(μ-PP3)X2](X = Cl(),Br(),I())的溶液表现为金属与配体比例为2:1的配合物混合物,而Ag2(μ-PP3)22的溶液表现为金属与配体比例为4:1的配合物混合物。[Au2(μ-PP3)X2]和Ag2(μ-PP3)22分别与溶液中的游离PP3反应生成离子化合物[Au(PP3)X]和[Ag(PP3)NO3]。通过X射线衍射表明,[Au(PP3)X]和[Ag(PP3)NO3]每个分子含有四个线性PAuX片段,通过3.270 Å()和3.184 Å()的紧密分子间金(I)-金(I)接触形成二聚体聚集体。所得的八核体系具有一个对称中心,两个对称相关的金(I)原子完全不在亲金区域内,与在其他含多膦的金(I)卤化物配合物中发现的聚集形式相比,这代表了一种新的聚集形式。研究了配体和配合物在固态下的发光性质。大多数金体系在室温和低温下显示出强烈的发光发射。卤素对金属与配体比例为4:1的化合物的亲金接触的影响导致不同的光物理性质,而[Au(PP3)X]是发光的,[Ag(PP3)NO3]是非发光的。对于没有亲金接触的[Au(PP3)X]配合物,发光随着膦/金属比例的增加而增强,发射更强。银配合物Ag2(μ-PP3)22和[Ag(PP3)NO3]在室温下不发光,在77 K时比金(I)物种发射更弱。