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混合价中间体 [Cl(L)Ru(μ-tppz)Ru(L)Cl]+中强的金属-金属耦合,L = β-二酮配体,tppz = 2,3,5,6-四(2-吡啶基)吡嗪。

Strong metal-metal coupling in mixed-valent intermediates [Cl(L)Ru(μ-tppz)Ru(L)Cl]+, L = β-diketonato ligands, tppz = 2,3,5,6-tetrakis(2-pyridyl)pyrazine.

机构信息

Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai-400076, India.

出版信息

Dalton Trans. 2012 Nov 21;41(43):13429-40. doi: 10.1039/c2dt31763j.

Abstract

Five diruthenium(II) complexes [Cl(L)Ru(μ-tppz)Ru(L)Cl] (1-5) containing differently substituted β-diketonato derivatives (1: L = 2,4-pentanedionato; 2: L = 3,5-heptanedionato; 3: L = 2,2,6,6-tetramethyl-3,5-heptanedionato; 4: L = 3-methyl-2,4-pentanedionato; 5: L = 3-ethyl-2,4-pentanedionato) as ancillary ligands (L) were synthesized and studied by spectroelectrochemistry (UV-Vis-NIR, electron paramagnetic resonance (EPR)). X-ray structural characterisation revealed anti (1, 2, 5) or syn (3) configuration as well as non-planarity of the bis-tridentate tppz bridge and strong dπ(Ru(II)) → π*(pyrazine, tppz) back-bonding. The widely separated one-electron oxidation steps, Ru(II)Ru(II)/Ru(II)Ru(III) and Ru(II)Ru(III)/Ru(III)Ru(III), result in large comproportionation constants (K(c)) of ≥10(10) for the mixed-valent intermediates. The syn-configurated (n) exhibits a particularly high K(c) of 10(12) for n = 1+, accompanied by density functional theory (DFT)-calculated minimum Ru-N bond lengths for this Ru(II)Ru(III) intermediate. The electrogenerated mixed-valent states 1(+)-5(+) exhibit anisotropic EPR spectra at 110 K with average values of 2.304-2.234 and g anisotropies Δg = g(1)-g(3) of 0.82-0.99. Metal-to-metal charge transfer (MMCT) absorptions occur for 1(+)-5(+) in the NIR region at 1660 nm-1750 nm (ε ≈ 2700 dm(3) mol(-1) cm(-1), Δν(1/2) ≈ 1800 cm(-1)). DFT calculations of 1(+) and 3(+) yield comparable Mulliken spin densities of about 0.60 for the metal ions, corresponding to valence-delocalised situations (Ru(2.5))(2). Rather large spin densities of about -0.4 were calculated for the tppz bridges in 1(+) and 3(+). The calculated electronic interaction values (V(AB)) for 1(+)-5(+) are about 3000 cm(-1), comparable to that for the Creutz-Taube ion at 3185 cm(-1). The DFT calculations predict that the Ru(III)Ru(III) forms in 1(2+)-5(2+) prefer a triplet (S = 1) ground state with ΔE (S = 0 - S = 1) ∼5000 cm(-1). One-electron reduction takes place at the tppz bridge which results in species Cl(L)Ru(II)(μ-tppz˙(-))Ru(II)(L)Cl (1˙(-)-3˙(-), 5˙(-)) which exhibit free radical-type EPR signals and NIR transitions typical of the tppz radical anion. The system 4(n) is distinguished by lability of the Ru-Cl bonds.

摘要

五个双钌(II)配合物 [Cl(L)Ru(μ-tppz)Ru(L)Cl](1-5),其中含有不同取代的β-二酮酸酯衍生物(1:L = 2,4-戊二酮;2:L = 3,5-庚二酮;3:L = 2,2,6,6-四甲基-3,5-庚二酮;4:L = 3-甲基-2,4-戊二酮;5:L = 3-乙基-2,4-戊二酮)作为辅助配体(L)被合成并通过光谱电化学(UV-Vis-NIR,电子顺磁共振(EPR))进行研究。X 射线结构特征表明,反式(1、2、5)或顺式(3)构型以及双三齿 tppz 桥的非平面性和强 dπ(Ru(II))→π*(吡嗪,tppz)反键。广泛分离的单电子氧化步骤,Ru(II)Ru(II)/Ru(II)Ru(III)和 Ru(II)Ru(III)/Ru(III)Ru(III),导致混合价中间体的大离解常数(K(c))≥10(10)。顺式构型(n)表现出特别高的 K(c)值为 10(12),对于 n = 1+,伴随着用于此 Ru(II)Ru(III)中间体的密度泛函理论(DFT)计算的最小 Ru-N 键长。电生成的混合价态 1(+)-5(+)在 110 K 下表现出各向异性的 EPR 谱,平均值 为 2.304-2.234,g 各向异性 Δg = g(1)-g(3)为 0.82-0.99。1(+)-5(+)在 NIR 区域在 1660nm-1750nm 处发生金属到金属电荷转移(MMCT)吸收(ε≈2700 dm(3) mol(-1) cm(-1),Δν(1/2)≈1800 cm(-1))。1(+)和 3(+)的 DFT 计算得出金属离子的大约 0.60 的可比 Mulliken 自旋密度,对应于价态离域的情况(Ru(2.5))(2)。在 1(+)和 3(+)中计算出大约-0.4 的较大的 tppz 桥自旋密度。1(+)-5(+)的计算电子相互作用值(V(AB))约为 3000cm(-1),与 Creutz-Taube 离子的 3185cm(-1)相当。DFT 计算预测 Ru(III)Ru(III)在 1(2+)-5(2+)中形成更喜欢三重态(S = 1)基态,ΔE(S = 0 - S = 1)≈5000cm(-1)。单电子还原发生在 tppz 桥上,导致物种 Cl(L)Ru(II)(μ-tppz˙(-))Ru(II)(L)Cl(1˙(-)-3˙(-),5˙(-)),其表现出自由基型 EPR 信号和典型的 tppz 自由基阴离子的 NIR 跃迁。体系 4(n)的特点是 Ru-Cl 键的不稳定性。

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