Winter Andreas, Friebe Christian, Chiper Manuela, Schubert Ulrich S, Presselt Martin, Dietzek Benjamin, Schmitt Michael, Popp Jürgen
Laboratory of Macromolecular Chemistry and Nanoscience, Eindhoven University of Technology, P. O. Box 513, 5600 MB Eindhoven, The Netherlands.
Chemphyschem. 2009 Mar 23;10(5):787-98. doi: 10.1002/cphc.200800714.
A series of nine zinc(II) complexes containing substituted 4'-phenyl-2,2':6',2''-terpyridines as ligands is synthesized and fully characterized. The ground-state structures of four examples are calculated by means of DFT and their structural features are confirmed by experimental Raman spectroscopy. Special focus is placed on the degree of pi-electron delocalization between the terpyridine unit and the attached phenyl moiety. Applying Bader's quantum theory of atoms in molecules (QTAIM) and visualizing the electron-density distribution by intermolecular Deltarho plots reveals an increase in ellipticity-and therefore pi-electron delocalization-for phenylvinyl-substituted derivatives compared to phenylethynyl-substituted ones. Experimentally, this is verified by spectroscopic means, because an increase in ellipticity goes along with a pronounced decrease of the HOMO-LUMO energy band gap. Overall, the lateral pi-conjugated substituents are found to strongly influence the electro-optical properties of the complexes. In solution, the color of emission can be modulated from violet to cyan (425-487 nm) and high quantum yields (Phi(PL) up to 0.60) are observed. Thin solid films of the complexes in a matrix of poly(methyl methacrylate) have been inkjet-printed, and their photophysical behavior (bright emission, Phi(PL) up to 0.30) reveals their potential as new emissive materials for applications in light-emitting devices.
合成并全面表征了一系列九个以取代的4'-苯基-2,2':6',2''-三联吡啶为配体的锌(II)配合物。通过密度泛函理论(DFT)计算了四个实例的基态结构,并通过实验拉曼光谱证实了它们的结构特征。特别关注三联吡啶单元与连接的苯基部分之间的π电子离域程度。应用巴德的分子中原子量子理论(QTAIM)并通过分子间Δρ图可视化电子密度分布,结果表明,与苯乙炔基取代的衍生物相比,苯乙烯基取代的衍生物的椭圆率增加,因此π电子离域增加。在实验上,这通过光谱手段得到了验证,因为椭圆率的增加伴随着HOMO-LUMO能带隙的显著减小。总体而言,发现横向π共轭取代基对配合物的电光性质有强烈影响。在溶液中,发射颜色可从紫色调制到青色(425 - 487 nm),并观察到高量子产率(Φ(PL)高达0.60)。已将配合物在聚甲基丙烯酸甲酯基质中的固体薄膜进行喷墨打印,其光物理行为(明亮发射,Φ(PL)高达0.30)揭示了它们作为发光器件应用中的新型发光材料的潜力。