Kim Pil-Sook G, Hu Yongfeng, Brandys Marie-C, Burchell Tara J, Puddephatt Richard J, Sham Tsun K
Department of Chemistry, University of Western Ontario, London, Ontario N6A 5B7, Canada.
Inorg Chem. 2007 Feb 5;46(3):949-57. doi: 10.1021/ic0609352.
Synchrotron techniques, X-ray-excited optical luminescence (XEOL) combined with X-ray absorption fine structures (XAFS), have been used to study the electronic structure and optical properties of a series of luminescent gold(I) complexes with diphosphine and bipyridine ligands using tunable X-rays (in the regions of the C and P K-edges and the Au L3-edge) and UV from synchrotron light sources. The effects of gold-ligand and aurophilic interactions on the luminescence from these gold(I) complexes have been investigated. It is found that the luminescence from these complexes is phosphorescence, primarily due to the decay of the Au (5d) --> PR3 (pi*), metal to ligand charge transfer (MLCT) excitation as well as contributions from the conjugated pi-system in the bipyridine ligands via the gold-nitrogen bond. The large Au 5d spin-orbit coupling enhances the intersystem crossing. The elongation of the hydrocarbon chain of the diphosphine ligand does not greatly affect the spectral features of the luminescence from the gold(I) complexes. However, the intensity of the luminescence was reduced significantly when the bipyridine ligand was replaced with 1,2-bis(4-pyridylamido)benzene. The aurophilic interaction, as investigated by EXAFS at the Au L3-edge, is shown to be only one of the factors that contribute to the luminescence of the complexes.
同步辐射技术,即结合X射线吸收精细结构(XAFS)的X射线激发光致发光(XEOL),已被用于利用可调谐X射线(在碳和磷K边以及金L3边区域)和同步辐射光源产生的紫外线来研究一系列含有二膦和联吡啶配体的发光金(I)配合物的电子结构和光学性质。研究了金-配体相互作用和亲金相互作用对这些金(I)配合物发光的影响。发现这些配合物的发光是磷光,主要归因于Au(5d)→PR3(π*)的衰减、金属到配体的电荷转移(MLCT)激发以及通过金-氮键在联吡啶配体中共轭π体系的贡献。大的Au 5d自旋-轨道耦合增强了系间窜越。二膦配体碳氢链的延长对金(I)配合物发光的光谱特征影响不大。然而,当联吡啶配体被1,2-双(4-吡啶酰胺基)苯取代时,发光强度显著降低。通过在金L3边的扩展X射线吸收精细结构(EXAFS)研究表明,亲金相互作用只是影响配合物发光的因素之一。