Polson Matthew I J, Medlycott Elaine A, Hanan Garry S, Mikelsons Larisa, Taylor Nick J, Watanabe Masashi, Tanaka Yasutaka, Loiseau Frédérique, Passalacqua Rosalba, Campagna Sebastiano
Département de Chimie, Université de Montréal, 2900 Edouard Montpetit, Montréal, QC, H3T 1J4, Canada.
Chemistry. 2004 Aug 6;10(15):3640-8. doi: 10.1002/chem.200400032.
A family of tridendate ligands 1 a-e, based on the 2-aryl-4,6-di(2-pyridyl)-s-triazine motif, was prepared along with their hetero- and homoleptic Ru(II) complexes 2 a-e (Ru(tpy)(1 a-e); tpy=2,2':6',2"-terpyridine) and 3 a-e ((Ru(1 a-e)(2)), respectively. The ligands and their complexes were characterized by (1)H NMR spectroscopy, ES-MS, and elemental analysis. Single-crystal X-ray analysis of 2 a and 2 e demonstrated that the triazine core is nearly coplanar with the non-coordinating ring, with dihedral angles of 1.2 and 18.6 degrees, respectively. The redox behavior and electronic absorption and luminescence properties (both at room temperature in liquid acetonitrile and at 77 K in butyronitrile rigid matrix) were investigated. Each species undergoes one oxidation process centered on the metal ion, and several (three for 2 a-e and four for 3 a-e) reduction processes centered on the ligand orbitals. All compounds exhibit intense absorption bands in the UV region, assigned to spin-allowed ligand-centered (LC) transitions, and moderately intense spin-allowed metal-to-ligand charge-transfer (MLCT) absorption bands in the visible region. The compounds exhibit relatively intense emissions, originating from triplet MLCT levels, both at 77 K and at room temperature. The incorporation of triazine rings and the near planarity of the noncoordinating ring increase the luminescence lifetimes of the complexes by lowering the energy of the (3)MLCT state and creating a large energy gap to the dd state.
基于2-芳基-4,6-二(2-吡啶基)-s-三嗪结构单元,制备了三齿配体家族1 a - e及其杂配和同配Ru(II)配合物2 a - e ([Ru(tpy)(1 a - e)](2 +); tpy = 2,2':6',2"-三联吡啶)和3 a - e ([(Ru(1 a - e)(2)](2 +))。通过(1)H NMR光谱、电喷雾质谱和元素分析对配体及其配合物进行了表征。对2 a和2 e的单晶X射线分析表明,三嗪核心与非配位环几乎共面,二面角分别为1.2度和18.6度。研究了其氧化还原行为、电子吸收和发光性质(均在室温下的液态乙腈中以及在77 K下的丁腈刚性基质中)。每个物种都经历一个以金属离子为中心的氧化过程,以及几个(2 a - e为三个,3 a - e为四个)以配体轨道为中心的还原过程。所有化合物在紫外区域均表现出强吸收带,归属于自旋允许的配体中心(LC)跃迁,在可见光区域表现出中等强度的自旋允许的金属到配体电荷转移(MLCT)吸收带。这些化合物在77 K和室温下均表现出相对较强的发射,源自三重态MLCT能级。三嗪环的引入和非配位环的近平面性通过降低(3)MLCT态的能量并与dd态形成较大的能隙,增加了配合物的发光寿命。