Kysliak Oleksandr, Schreiner Simon H F, Grabicki Niklas, Liebing Phil, Weigend Florian, Dumele Oliver, Kretschmer Robert
Institute of Inorganic and Analytical Chemistry (IAAC), Friedrich Schiller University Jena, Humboldtstraße 8, 07743, Jena, Germany.
Institute of Chemistry, University of Technology Chemnitz, Straße der Nationen 62, 09111, Chemnitz, Germany.
Angew Chem Int Ed Engl. 2022 Aug 1;61(31):e202206963. doi: 10.1002/anie.202206963. Epub 2022 Jun 23.
Many chemicals known today are partially or fully aromatic, since a ring framework experiences additional stabilization through the delocalization of π-electrons. While aromatic rings with equal numbers of π-electrons and ring atoms such as benzene are particularly stable, those with the minimally required two π-electrons are very rare and yet remain limited to three- and four-membered rings if not stabilized in the coordination sphere of heavy metals. Here we report the facile synthesis of a dipotassium cyclopentagallene, a unique example of a five-membered aromatic ring stabilized by only two π-electrons. Single-crystal X-ray diffraction revealed a planar Ga ring with almost equal gallium-gallium bond lengths, which together with computational and spectroscopic data confirm its aromatic character. Our results prove that aromatic stabilization goes far beyond what has previously been assumed as minimum π-electron count in a five-atom ring fragment.
如今已知的许多化学物质部分或完全具有芳香性,因为环状结构通过π电子离域获得了额外的稳定性。虽然具有相同数量π电子和环原子的芳香环(如苯)特别稳定,但那些仅含最低要求的两个π电子的芳香环非常罕见,并且如果不在重金属的配位球中稳定下来,就仅限于三元环和四元环。在此,我们报告了二钾环戊镓烯的简便合成方法,这是一个仅由两个π电子稳定的五元芳香环的独特例子。单晶X射线衍射显示出一个平面的镓环,其镓-镓键长几乎相等,这与计算和光谱数据一起证实了其芳香性。我们的结果证明,芳香稳定性远远超出了此前所认为的五原子环片段中的最小π电子数。