Eulenstein Armin R, Franzke Yannick J, Lichtenberger Niels, Wilson Robert J, Deubner H Lars, Kraus Florian, Clérac Rodolphe, Weigend Florian, Dehnen Stefanie
Fachbereich Chemie, Philipps-Universität Marburg, Marburg, Germany.
Wissenschaftliches Zentrum für Materialwissenschaften (WZMW), Philipps-Universität Marburg, Marburg, Germany.
Nat Chem. 2021 Feb;13(2):149-155. doi: 10.1038/s41557-020-00592-z. Epub 2020 Dec 7.
The concept of aromaticity was originally defined as a property of unsaturated, cyclic planar organic molecules like benzene, which gain stability by the inherent delocalization of 4n + 2 π-electrons over the ring atoms. Since then, π-aromaticity has been observed for a large variety of organic and inorganic non-metal compounds, yet, for molecules consisting only of metal atoms, it has remained restricted to systems with three to five atoms. Here, we present the straightforward synthesis of a metal 12-ring that exhibits 2π-aromaticity and has a ring current much stronger than that of benzene (6π) and equivalent to that of porphine (26π), despite these organic molecules having (much) larger numbers of π-electrons. Highly reducing reaction conditions allowed access to the heterometallic anion [Th@Bi], with interstitial Th stabilizing a Bi moiety. Our results show that it is possible to design and generate substantial π-aromaticity in large metal rings, and we hope that such π-aromatic heavy-metal cycles will eventually find use in cluster-based reactions.
芳香性的概念最初被定义为不饱和环状平面有机分子(如苯)的一种性质,这类分子通过4n + 2个π电子在环原子上的固有离域而获得稳定性。从那时起,人们在各种各样的有机和无机非金属化合物中都观察到了π芳香性,然而,对于仅由金属原子组成的分子,π芳香性仍局限于三到五个原子的体系。在此,我们展示了一种金属12元环的直接合成方法,该金属12元环表现出2π芳香性,并且尽管这些有机分子具有(多得多的)更多数量的π电子,但其环电流比苯(6π)强得多,与卟吩(26π)相当。高度还原的反应条件使得能够得到异金属阴离子[Th@Bi],其中间隙的Th使Bi部分得以稳定。我们的结果表明,在大型金属环中设计并产生显著的π芳香性是可能的,并且我们希望这类π芳香重金属环最终能用于基于团簇的反应中。