Mu Yu, Dai Yuyang, Ruiz David A, Liu Liu Leo, Xu Li-Ping, Tung Chen-Ho, Kong Lingbing
School of Chemistry and Chemical Engineering, Shandong University, Jinan, 250100, China.
Department of Chemistry and Research Center for Chemical Biology and Omics Analysis, College of Science, Southern University of Science and Technology, Shenzhen, 518055, China.
Angew Chem Int Ed Engl. 2024 Aug 5;63(32):e202405905. doi: 10.1002/anie.202405905. Epub 2024 Jul 4.
The replacement of a CC unit with an isoelectronic BN unit in aromatic systems can give rise to molecules and materials with fascinating properties. We report here the synthesis, characterization, and reactivity of a 1,4,2,3-diazadiborole species, 2, featuring an unprecedented 6π-aromatic BN-heterocyclic moiety that is isoelectronic to cyclopentadienide (Cp). Bearing an unsymmetrical B=B entity, 2 exhibits reactivity toward oxidants, protic reagents, electrophiles, and unsaturated substrates. This reactivity facilitates the synthesis of a variety of novel mono- and bicyclic organoboron derivatives through mechanisms including ring retention, cleavage/recombination, annulation, and expansion. These findings reveal innovative synthetic routes to BN-embedded aromatic compounds via desymmetrization, affording unique building blocks for synthetic chemistry.
在芳香体系中用等电子的硼氮(BN)单元取代碳碳(CC)单元能够产生具有迷人性质的分子和材料。我们在此报告一种1,4,2,3-二氮杂二硼戊环物种(2)的合成、表征及反应活性,该物种具有前所未有的6π芳香性硼氮杂环部分,与环戊二烯负离子(Cp)等电子。由于含有不对称的硼硼(B=B)实体,2对氧化剂、质子试剂、亲电试剂和不饱和底物表现出反应活性。这种反应活性通过包括环保留、裂解/重组、环化和扩环等机制促进了多种新型单环和双环有机硼衍生物的合成。这些发现揭示了通过去对称化合成嵌入硼氮的芳香化合物的创新路线,为合成化学提供了独特的结构单元。