Kovács Margit, Ronayne Kate L, Browne Wesley R, Henry William, Vos Johannes G, McGarvey John J, Horváth Attila
Department of General and Inorganic Chemistry, University of Pannonia, PO Box 158, Veszprém, H-08201, Hungary.
Photochem Photobiol Sci. 2007 Apr;6(4):444-53. doi: 10.1039/b611825a. Epub 2006 Nov 6.
The spectroscopic characterisation of a series of Ru(LL)(CN)(4) complexes, where LL = 1,10-phenanthroline (phen) and its methyl- and phenyl-substituted derivatives and several deuteriated isotopologues are reported. The optical and vibrational properties of these complexes are compared with that of the series of 2,2'-bipyridine (bipy) derivatives and analogous Ru(LL)(3) complexes. It has been demonstrated that substitution at the 4,4' positions of bipy and 4,7-positions of phen by electron donating (CH(3)) and withdrawing (C(6)H(5), COO(-)) groups induces a pronounced blue and red shift, respectively, in the lowest energy (1)MLCT absorption band of Ru(LL)(CN)(4). The energy of the emission originating from the (3)MLCT excited state is found to be dependant on the nature of the vibrational modes of the aromatic rings and the electron donating and/or withdrawing properties of the substituents. Single-mode Franck-Condon analysis indicates that methyl substitution leads to a significant increase in the Huang-Rhys factor (S(M)), while phenyl substitution results in a decrease in S(M) for both series (bipy and phen) of complexes. The rate of non-radiative (k(nr)) and radiative decay (k(ph)) to the ground state and the parameters of thermally activated deactivation pathways (A(4th), DeltaE(4th) and A(dd), DeltaE(dd)) were estimated from the temperature dependence of luminescence quantum yields and lifetimes. It has been demonstrated that the non-radiative decay rate and the temperature dependent decay processes are more efficient for bipy complexes than for phen derivatives due to the rigidity of the latter ligand.
报道了一系列[Ru(LL)(CN)(4)]²⁻配合物的光谱表征,其中LL = 1,10 - 菲咯啉(phen)及其甲基和苯基取代衍生物以及几种氘代同位素类似物。将这些配合物的光学和振动性质与2,2'-联吡啶(bipy)衍生物系列和类似的[Ru(LL)(3)]²⁺配合物进行了比较。已经证明,在联吡啶的4,4'位和菲咯啉的4,7位用供电子(CH₃)和吸电子(C₆H₅,COO⁻)基团进行取代,分别会在[Ru(LL)(CN)(4)]²⁻的最低能量(¹)MLCT吸收带中引起明显的蓝移和红移。发现源自(³)MLCT激发态的发射能量取决于芳环振动模式的性质以及取代基的供电子和/或吸电子性质。单模弗兰克 - 康登分析表明,甲基取代导致黄 - 里斯因子(S(M))显著增加,而苯基取代导致两个系列(联吡啶和菲咯啉)配合物的S(M)均降低。根据发光量子产率和寿命的温度依赖性估算了基态的非辐射(k(nr))和辐射衰减(k(ph))速率以及热激活失活途径的参数(A(4th),ΔE(4th)和A(dd),ΔE(dd))。已经证明,由于后者配体的刚性,联吡啶配合物的非辐射衰减速率和温度依赖性衰减过程比菲咯啉衍生物更有效。