Molon Mariusz, Gemel Christian, Jerabek Paul, Trombach Lukas, Frenking Gernot, Fischer Roland A
Inorganic Chemistry II-Organometallics & Materials, Ruhr-Universität Bochum , D-44780 Bochum, Germany.
Inorg Chem. 2014 Oct 6;53(19):10403-11. doi: 10.1021/ic5014335. Epub 2014 Sep 22.
The novel all-hydrocarbon ligand-stabilized binuclear clusters of metal-core composition Ni2Zn7E, [(η(5)-Cp*)Ni2(ZnMe)6(ZnCp*)(ECp*)] (1-Zn, E = Zn; 1-Ga, E = Ga) and [(η(6)-toluene)Ni2(ZnCp*)2(ZnMe)6] (2; Cp* = pentamethylcyclopentadienyl), were obtained via Ga/Zn and Al/Zn exchange reactions using the starting compounds [Ni2(ECp*)3(η(2)-C2H4)2] (E = Al/Ga) and an excess of ZnMe2 (Me = CH3). Compounds 1-Zn and 1-Ga are very closely related and differ only by one Zn or Ga atom in the group 12/13 metal shell (Zn/Ga) around the two Ni centers. Accordingly, 1-Zn is EPR-active and 1-Ga is EPR-silent. The compounds were derived as a crystalline product mixture. All new compounds were characterized by (1)H and (13)C NMR and electron paramagnetic resonance (EPR) spectroscopy, mass spectrometric analysis using liquid-injection field desorption ionization, and elemental analysis, and their molecular structures were determined by single-crystal X-ray diffraction studies. In addition, the electronic structure has been investigated by DFT and QTAIM calculations, which suggest that there is a Ni1-Ni2 binding interaction. Similar to Zn-rich intermetallic phases of the Hume-Rothery type, the transition metals (here Ni) are distributed in a matrix of Zn atoms to yield highly Zn-coordinated environments. The organic residues, ancillary ligands (Me, Cp*, and toluene), can be viewed as the "protecting" shell of the 10-metal-atom core structures. The soft and flexible binding properties of Cp* and transferability of Me substituents between groups 12 and 13 are essential for the success of this precedence-less type of cluster formation reaction.
新型全碳氢配体稳定的金属核组成的双核簇合物Ni₂Zn₇E,即[(η⁵-Cp*)Ni₂(ZnMe)₆(ZnCp*)(ECp*)](1-Zn,E = Zn;1-Ga,E = Ga)和[(η⁶-甲苯)Ni₂(ZnCp*)₂(ZnMe)₆](2;Cp* = 五甲基环戊二烯基),是通过使用起始化合物[Ni₂(ECp*)₃(η²-C₂H₄)₂](E = Al/Ga)和过量的ZnMe₂(Me = CH₃)进行Ga/Zn和Al/Zn交换反应得到的。化合物1-Zn和1-Ga密切相关,仅在围绕两个Ni中心的第12/13族金属壳层(Zn/Ga)中相差一个Zn或Ga原子。因此,1-Zn具有EPR活性,而1-Ga没有EPR信号。这些化合物是以结晶产物混合物的形式得到的。所有新化合物都通过¹H和¹³C NMR、电子顺磁共振(EPR)光谱、使用液体注入场解吸电离的质谱分析以及元素分析进行了表征,并且通过单晶X射线衍射研究确定了它们的分子结构。此外,还通过DFT和QTAIM计算研究了电子结构,结果表明存在Ni₁-Ni₂键合相互作用。与Hume-Rothery型富锌金属间相类似,过渡金属(这里是Ni)分布在Zn原子的基质中,形成高度Zn配位的环境。有机残基、辅助配体(Me、Cp和甲苯)可视为10金属原子核心结构的“保护”壳层。Cp的柔软灵活的键合性质以及Me取代基在第12族和第13族之间的可转移性对于这种无前例的簇合物形成反应的成功至关重要。