Tromp Moniek, van Bokhoven Jeroen A, van Strijdonck Gino P F, van Leeuwen Piet W N M, Koningsberger Diek C, Ramaker David E
Debye Institute, Department of Inorganic Chemistry and Catalysis, Utrecht University, Sorbonnelaan 16, 3584 CA Utrecht, The Netherlands.
J Am Chem Soc. 2005 Jan 19;127(2):777-89. doi: 10.1021/ja048225n.
Pd K-edge X-ray absorption near-edge spectroscopy (XANES) is used to probe the unoccupied molecular orbitals in bidentate diphosphine Pd complexes. Complexes containing a series of bidentate diphosphine ligands (PP) are examined to study the effect of the ligand bite angle on the charge redistribution in these complexes. Different coordinating moieties (XX) have been used to induce a range of Pd oxidation states. A full interpretation of the Pd K-edge XANES data is presented. The negative second derivative of these XANES data provides direct information on the energy and electronic distribution of the different unoccupied molecular orbitals probed. The charge redistributions within the complexes, as reflected in the effective Pd oxidation state, are indicated by both the intensity of the first edge feature, the "Pd d peak", and the energy of the second edge feature, the "Pd p peak", which can be easily observed in the negative second derivative of the XANES data. Additionally, the changing covalent interaction between the Pd and coordinated moieties via the Pd p orbitals is reflected directly in the energy splitting of the "Pd p" peak. Thus, investigation of these (PP)Pd(XX) complexes, some used as catalysts in organic synthesis, with XANES spectroscopy provides new essential information on their electronic properties. Further, the XANES analysis techniques described in this paper can be applied to investigate the unoccupied molecular orbitals and charge redistributions within a wide range of samples.
钯K边X射线吸收近边光谱(XANES)用于探测双齿二膦钯配合物中的未占据分子轨道。研究了一系列含有双齿二膦配体(PP)的配合物,以探讨配体咬合角对这些配合物中电荷重新分布的影响。使用了不同的配位部分(XX)来诱导一系列钯氧化态。给出了钯K边XANES数据的完整解释。这些XANES数据的负二阶导数提供了有关所探测的不同未占据分子轨道的能量和电子分布的直接信息。配合物中的电荷重新分布,如有效钯氧化态所反映的,由第一个边特征“钯d峰”的强度和第二个边特征“钯p峰”的能量表示,这在XANES数据的负二阶导数中很容易观察到。此外,钯与配位部分之间通过钯p轨道的共价相互作用的变化直接反映在“钯p”峰的能量分裂中。因此,用XANES光谱研究这些(PP)Pd(XX)配合物(其中一些用作有机合成中的催化剂),为其电子性质提供了新的重要信息。此外,本文所述的XANES分析技术可应用于研究广泛样品中的未占据分子轨道和电荷重新分布。