Department of Chemistry, Texas A&M University, P.O. Box 3012, College Station, Texas 77842-3012, USA.
Inorg Chem. 2012 May 7;51(9):5257-63. doi: 10.1021/ic300169f. Epub 2012 Apr 16.
Three rare compounds have been synthesized and structurally characterized; these species have paddlewheel structures and Re(2)(7+) cores surrounded by four bicyclic guanidinates and two axial ligands along the Re-Re axis. Each possesses a formal bond order of 3.5 and a σ(2)π(4)δ(1) electronic configuration that entails the presence of one unpaired electron for each compound. The guanidinate ligands characterized by having CH(2) entities and a central C(N)(3) unit that joins two cyclic units--one having two fused 6-membered rings (hpp) and the other having a 5- and a 6-membered ring fused together (tbn)--allowed the isolation of [Re(2)(tbn)(4)Cl(2)]PF(6), 1, [Re(2)(tbn)(4)Cl(2)]Cl, 2, and Re(2)(hpp)(4)(O(3)SCF(3))(2), 3. Because of the larger bite angle of the tbn relative to the hpp ligand, the Re-Re bond distances in 1 and 2 (2.2691(14) and 2.2589(14) Å, respectively) are much longer than that in 3 (2.1804(8) Å). Importantly, electron paramagnetic resonance (EPR) studies at both X-band (9.4 GHz) and W-band (112 GHz) in the solid and in frozen solution show unusually low g-values (1.75) and the absence of zero-field splitting, providing direct evidence for the presence of one metal-based unpaired electron for both 1 and 3. These spectroscopic data suggest that the unsymmetrical 5-/6-membered ligand leads to the formation of isomers, as shown by significantly broader EPR signals for 1 than for 3, even though both compounds possess what appears to be similar ideal crystallographic axial symmetry on the X-ray time scale.
已经合成并结构表征了三种罕见的化合物;这些物种具有桨轮结构和 Re(2)(7+)核,周围有四个双环胍基和两个轴向配体沿着 Re-Re 轴。每个化合物都具有形式键级为 3.5 和 σ(2)π(4)δ(1)电子构型,这意味着每个化合物都有一个未配对的电子。胍基配体的特点是具有 CH(2)实体和一个中央 C(N)(3)单元,该单元连接两个环状单元——一个具有两个稠合的 6 元环(hpp),另一个具有一个 5 元和一个 6 元环稠合在一起(tbn)——允许分离出 [Re(2)(tbn)(4)Cl(2)]PF(6),1,[Re(2)(tbn)(4)Cl(2)]Cl,2,和 Re(2)(hpp)(4)(O(3)SCF(3))(2),3。由于 tbn 的咬合角度相对较大,因此 1 和 2 中的 Re-Re 键距离(分别为 2.2691(14)和 2.2589(14)Å)比 3 中的 Re-Re 键距离(2.1804(8)Å)长得多。重要的是,在固态和冷冻溶液中,X 波段(9.4 GHz)和 W 波段(112 GHz)的电子顺磁共振(EPR)研究表明,g 值异常低(1.75),且不存在零场分裂,这为 1 和 3 中存在一个基于金属的未配对电子提供了直接证据。这些光谱数据表明,不对称的 5-/6-元配体导致了异构体的形成,正如 1 的 EPR 信号比 3 的 EPR 信号宽得多所示,尽管这两种化合物在 X 射线时间尺度上都具有类似的理想晶体轴向对称性。