Alemayehu Abraham B, McCormick-McPherson Laura J, Conradie Jeanet, Ghosh Abhik
Department of Chemistry, UiT-The Arctic University of Norway, N-9037 Tromsø, Norway.
Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, California 94720-8229, United States.
Inorg Chem. 2021 Jun 7;60(11):8315-8321. doi: 10.1021/acs.inorgchem.1c00986. Epub 2021 May 17.
The interaction of free-base triarylcorroles with Re(CO) in 1,2-dichlorobenzene in the presence of 2,6-lutidine at 180 °C under strict anerobic conditions afforded approximately 10% yields of rhenium corrole dimers. The compounds exhibited diamagnetic H NMR spectra consistent with a metal-metal quadruple bond with a σπδ orbital occupancy. One of the compounds proved amenable to single-crystal X-ray structure determination, yielding a metal-metal distance of ∼2.24 Å, essentially identical to that in triple-bonded osmium corrole dimers. On the other hand, the electrochemical properties of Re and Os corrole dimers proved to be radically different. Thus, the reduction potentials of the Re corrole dimers are some 800 mV upshifted relative to those of their Os counterparts. Stated differently, the Re corrole dimers are dramatically easier to reduce, reflecting electron addition to δ* versus π* molecular orbitals for Re and Os corrole dimers, respectively. The data also imply electrochemical HOMO-LUMO gaps of only 1.0-1.1 V for rhenium corrole dimers, compared with values of 1.85-1.90 V for their Os counterparts. These HOMO-LUMO gaps rank among the first such values reported for quadruple-bonded transition-metal dimers for any type of supporting ligand, porphyrin-type or not.
在严格厌氧条件下,于180℃,在2,6 - 二甲基吡啶存在的情况下,游离碱三芳基卟吩与Re(CO)在1,2 - 二氯苯中反应,得到约10%产率的铼卟吩二聚体。这些化合物的核磁共振氢谱呈抗磁性,与具有σπδ轨道占据的金属 - 金属四重键一致。其中一种化合物适合进行单晶X射线结构测定,得到的金属 - 金属距离约为2.24 Å,与三键合锇卟吩二聚体中的距离基本相同。另一方面,铼和锇卟吩二聚体的电化学性质被证明有根本差异。因此,铼卟吩二聚体的还原电位相对于锇卟吩二聚体的还原电位上移了约800 mV。换句话说,铼卟吩二聚体显著更容易被还原,这分别反映了电子添加到铼和锇卟吩二聚体的δ与π分子轨道上。数据还表明,铼卟吩二聚体的电化学最高已占分子轨道 - 最低未占分子轨道能隙仅为1.0 - 1.1 V,而锇卟吩二聚体的值为1.85 - 1.90 V。对于任何类型的支持配体(无论是否为卟啉型),这些最高已占分子轨道 - 最低未占分子轨道能隙在报道的四重键合过渡金属二聚体中处于前列。