Ghumaan Sandeep, Sarkar Biprajit, Chanda Nripen, Sieger Monika, Fiedler Jan, Kaim Wolfgang, Lahiri Goutam Kumar
Department of Chemistry, Indian Institute of Technology-Bombay, Powai, Mumbai - 400076, India.
Inorg Chem. 2006 Sep 18;45(19):7955-61. doi: 10.1021/ic060887l.
The tppz-bridged diruthenium(II) complex (dpk)(Cl)Ru(II)(mu-tppz)Ru(II)(Cl)(dpk)2, 22, and mononuclear (dpk)(Cl)Ru(II)(tppz), 1 [tppz = 2,3,5,6-tetrakis(2-pyridyl)pyrazine, dpk = 2,2'-dipyridylketone], have been synthesized. The 260 mV separation between successive one-electron oxidation couples in [2]2+ translates to a relatively small comproportionation constant, Kc, of 2.5 x 10(4) for the intermediate. It is shown how electrochemical data (E(ox), E(red), Kc) reflect the donor/acceptor effects of ancillary ligands L in a series of systems [(L)ClRu(mu-tppz)RuCl(L)]n, particularly the competition between L and tppz for electron density from the metal. According to EPR (g1 = 2.470, g2 = 2.195, and g3 = 1.873 at 4 K) the intermediate [2]3+ is a mixed-valent Ru(II)Ru(III) species which shows a rather narrow intervalence charge transfer (IVCT) band at 1800 nm (epsilon = 1500 M(-1) cm(-1)). The width at half-height (Deltanu(1/2)) of 700 cm(-1) of the IVCT band is much smaller than the calculated value of 3584 cm(-1), obtained by using the Hush formula Deltanu(1/2) = (2310E(op))(1/2) (E(op) = 5556 cm(-1), energy of the IVCT transition) which would be applicable to localized (Class II) mixed-valent Ru(II)Ru(III) systems. Valence delocalization in [2]3+ is supported by the uniform shift of the nu(C=O) band of the N,N'-coordinated dpk ligands from 1676 cm(-1) in the Ru(II)Ru(II) precursor to 1690 cm(-1) in the Ru(2.5)Ru(2.5) form, illustrating the use of the dpk acceptor to act as reporter ligand via the free but pi-conjugated organic carbonyl group. The apparent contradiction between the moderate value of Kc and the narrow IVCT band is being discussed considering "borderline" or "hybrid" "Class II-III" concepts of mixed-valency, as well as coordination aspects, i.e., the bis-tridentate nature of the pi-acceptor bridging ligand. Altogether, the complex ions [1]+ and [2]2+ display four and five successive reduction processes, respectively, involving both tppz- and dpk-based unoccupied pi orbitals. The one-electron reduced form [2]+ has been assigned as a tppz*- radical-anion-containing species which exhibits a free-radical-type EPR signal at 4K (g(parallel) = 2.002, g(perpendicular) = 1.994) and one moderately intense ligand-based low-energy band at 965 nm (epsilon = 1100 M(-1) cm(-1)).
已合成了由tppz桥连的二钌(II)配合物(dpk)(Cl)Ru(II)(μ-tppz)Ru(II)(Cl)(dpk)2,即22以及单核配合物(dpk)(Cl)Ru(II)(tppz),即1 [tppz = 2,3,5,6 - 四(2 - 吡啶基)吡嗪,dpk = 2,2'-二吡啶基酮]。[2]2+中连续单电子氧化偶之间260 mV的间距转化为该中间体相对较小的化学计量比常数Kc,为2.5×10(4)。展示了电化学数据(E(ox)、E(red)、Kc)如何反映一系列体系[(L)ClRu(μ-tppz)RuCl(L)]n中辅助配体L的供体/受体效应,特别是L与tppz在从金属获取电子密度方面的竞争。根据电子顺磁共振(在4 K时g1 = 2.470,g2 = 2.195,g3 = 1.873),中间体[2]3+是一种混合价Ru(II)Ru(III)物种,在1800 nm处显示出相当窄的价间电荷转移(IVCT)带(ε = 1500 M(-1) cm(-1))。IVCT带半高宽(Δν(1/2))为700 cm(-1),远小于使用赫什公式Δν(1/2) = (2310E(op))(1/2)(E(op) = 5556 cm(-1),IVCT跃迁能量)计算得到的3584 cm(-1),该公式适用于局域化(II类)混合价Ru(II)Ru(III)体系。[2]3+中的价离域作用由N,N'-配位的dpk配体的ν(C=O)带从Ru(II)Ru(II)前体中的1676 cm(-1)均匀位移至Ru(2.5)Ru(2.5)形式中的1690 cm(-1)所支持,这说明了dpk受体通过游离但π共轭的有机羰基作为报告配体的作用。考虑到混合价的“边界”或“混合”“II - III类”概念以及配位方面,即π受体桥连配体的双三齿性质,正在讨论Kc的适中值与窄IVCT带之间明显的矛盾。总之,配合物离子[1]+和[2]2+分别显示出四个和五个连续的还原过程,涉及基于tppz和dpk的未占据π轨道。单电子还原形式[2]+已被确定为含有tppz*自由基阴离子的物种,其在4 K时表现出自由基型电子顺磁共振信号(g(平行) = 2.002,g(垂直) = 1.994)以及在965 nm处有一个中等强度的基于配体的低能带(ε = 1100 M(-1) cm(-1))。