Department of Molecular Engineering, Graduate School of Engineering, Kyoto University, Kyoto 615-8510, Japan.
J Am Chem Soc. 2012 Jan 25;134(3):1825-39. doi: 10.1021/ja210205v. Epub 2012 Jan 12.
5-(Diphenylphosphanyl)-10,15,20-triarylporphyrins (meso-phosphanylporphyrins) underwent complexations with palladium(II) and platinum(II) salts to afford phosphapalladacycle- and phosphaplatinacycle-fused coplanar porphyrin dimers, respectively, via regioselective peripheral β-C-H activation of the meso-phosphanylporphyrin ligands. The optical and electrochemical properties of these metal-linked porphyrin dimers as well as their porphyrin monomer/dimer references were investigated by means of steady-state UV-vis absorption/fluorescence spectroscopy, cyclic and differential pulse voltammetry, time-resolved spectroscopy (fluorescence and transient absorption lifetimes and spectra), and magnetic circular dichroism spectroscopy. All the observed data clearly show that the palladium(II) and platinum(II) linkers play crucial roles in the electronic communication between two porphyrin chromophores at the one-electron oxidized state and in the singlet-triplet intersystem-crossing process at the excited state. It has also been revealed that the C-Pt-C linkage makes more significant impacts on these fundamental properties than the C-Pd-C linkage. Furthermore, density functional theory calculations on the metal-linked porphyrin dimers have suggested that the antibonding dπ-pπ orbital interaction between the peripherally attached metal and adjacent pyrrolic β-carbon atoms destabilizes the highest occupied molecular orbitals of the porphyrin π-systems and accounts for the observed unique absorption properties. On the basis of these experimental and theoretical results, it can be concluded that the linear carbon-metal-carbon linkages weakly but definitely perturb the optical, photophysical, and electrochemical properties of the phosphametallacycle-linked coplanar porphyrin dimers.
5-(二苯膦基)-10,15,20-三芳基卟啉(meso-膦基卟啉)与钯(II)和铂(II)盐发生络合反应,分别通过meso-膦基卟啉配体的区域选择性外围β-C-H 活化,得到磷钯杂环并合平面卟啉二聚体和磷铂杂环并合平面卟啉二聚体。通过稳态紫外-可见吸收/荧光光谱、循环伏安法和差分脉冲伏安法、时间分辨光谱(荧光和瞬态吸收寿命和光谱)以及圆二色性光谱研究了这些金属键合卟啉二聚体及其卟啉单体/二聚体参比物的光学和电化学性质。所有观察到的数据清楚地表明,钯(II)和铂(II)键合体在单电子氧化态下两个卟啉发色团之间的电子通信以及激发态中单重态-三重态系间交叉过程中起着至关重要的作用。还发现 C-Pt-C 键合比对这些基本性质的影响比 C-Pd-C 键合对更大。此外,金属键合卟啉二聚体的密度泛函理论计算表明,外围附着的金属与相邻吡咯β-碳原子之间的反键 dπ-pπ轨道相互作用使卟啉π-体系的最高占据分子轨道不稳定,并解释了观察到的独特吸收性质。基于这些实验和理论结果,可以得出结论,线性碳-金属-碳键合对磷金属杂环键合的共面卟啉二聚体的光学、光物理和电化学性质产生微弱但确实的干扰。