Roy Dipak Kumar, Tröster Tobias, Fantuzzi Felipe, Dewhurst Rian D, Lenczyk Carsten, Radacki Krzysztof, Pranckevicius Conor, Engels Bernd, Braunschweig Holger
Institute for Inorganic Chemistry, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.
Institute for Sustainable Chemistry & Catalysis with Boron, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.
Angew Chem Int Ed Engl. 2021 Feb 15;60(7):3812-3819. doi: 10.1002/anie.202014557. Epub 2020 Dec 27.
The concepts of aromaticity and antiaromaticity have a long history, and countless demonstrations of these phenomena have been made with molecules based on elements from the p, d, and f blocks of the periodic table. In contrast, the limited oxidation-state flexibility of the s-block metals has long stood in the way of their participation in sophisticated π-bonding arrangements, and truly antiaromatic systems containing s-block metals are altogether absent or remain poorly defined. Using spectroscopic, structural, and computational techniques, we present herein the synthesis and authentication of a heterocyclic compound containing the alkaline earth metal beryllium that exhibits significant antiaromaticity, and detail its chemical reduction and Lewis-base-coordination chemistry.
芳香性和反芳香性的概念有着悠久的历史,基于元素周期表中p、d和f区元素的分子对这些现象进行了无数次的证明。相比之下,s区金属有限的氧化态灵活性长期以来阻碍了它们参与复杂的π键排列,而真正含有s区金属的反芳香体系完全不存在或仍定义不明确。我们利用光谱、结构和计算技术,在此展示了一种含有碱土金属铍的杂环化合物的合成与鉴定,该化合物表现出显著的反芳香性,并详细介绍了其化学还原和路易斯碱配位化学。