State Key Labortory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210093, PR China.
Dalton Trans. 2009 Dec 21(47):10563-9. doi: 10.1039/b912823a. Epub 2009 Oct 16.
Three N,N-bidentate ligands, 5,5'-dibromo-2,2-bipyridine (L1) and two carbazole containing ligands of 5-bromo-5'-carbazolyl-2,2-bipyridine (L2), 5,5'-dicarbazolyl-2,2'-bipyridine (L3), and their corresponding rhenium Re(CO)3Cl(L) complexes (ReL1-ReL3) have been successfully synthesized and characterized by elemental analysis, 1H NMR and IR spectra. Their photophysical properties and thermal analysis, along with the X-ray crystal structure analysis of L3 and complexes ReL1 and ReL3 are also described. In CH2Cl2 solution at room temperature, all complexes display intense absorption bands at ca. 220-350 nm, which can be assigned to spin-allowed intraligand (pi-->pi*) transitions, and the low energy broad bands in the 360-480 nm region are attributed to the metal to ligand charge-transfer d(Re)-->pi* (diimine) (MLCT). The introduction of carbazole moieties improves the MLCT absorption and molar extinction coefficient of these complexes. Upon excitation at the peak maxima, all complexes show strong emissions around 620 nm, which are assigned to d(Re)-->pi* (diimine) MLCT phosphorescence. The photoluminescence lifetime decay of Re(I) complexes were measured and the quantum efficiencies of the rhenium(I) complexes were calculated by using air-equilibrated [Ru(bpy)3]2+ x 2 Cl- aqueous solution as standard (phi(std) = 0.028). The complexes with appended carbazole moieties exhibit enhanced luminescence performances relative to ReL1.
三种 N,N-双齿配体,5,5'-二溴-2,2'-联吡啶(L1)和两种含咔唑的配体 5-溴-5'-咔唑基-2,2'-联吡啶(L2)、5,5'-二咔唑基-2,2'-联吡啶(L3),以及它们相应的铼 Re(CO)3Cl(L)配合物(ReL1-ReL3)已经成功地通过元素分析、1H NMR 和 IR 光谱进行了合成和表征。还描述了它们的光物理性质和热分析,以及 L3 和配合物 ReL1 和 ReL3 的 X 射线晶体结构分析。在室温的 CH2Cl2 溶液中,所有配合物都显示出在约 220-350nm 处的强吸收带,这可以归因于自旋允许的内配体(pi-->pi*)跃迁,而在 360-480nm 区域的低能宽带归因于金属到配体电荷转移 d(Re)-->pi*(二亚胺)(MLCT)。咔唑部分的引入提高了这些配合物的 MLCT 吸收和摩尔消光系数。在峰最大值激发时,所有配合物都在约 620nm 处显示出强发射,这归因于 d(Re)-->pi*(二亚胺)MLCT 磷光。测量了 Re(I)配合物的光致发光寿命衰减,并使用空气平衡的 [Ru(bpy)3]2+ x 2 Cl- 水溶液作为标准计算了铼(I)配合物的量子效率(phi(std) = 0.028)。带有附加咔唑部分的配合物相对于 ReL1 表现出增强的发光性能。