Palui Prasenjit, Bollenbeck Matthias, Meleschko Daniel, Brehm Philipp, Gomila Rosa M, Schnakenburg Gregor, Frontera Antonio, Bismuto Alessandro
Institute of Inorganic Chemistry, University of Bonn Gerhard-Domagk-Str. 1 53121 Bonn Germany
Departament de Química, Universitat de les Illes Balears Crta. de Valldemossa km 7.5 07122 Palma Baleares Spain.
Chem Sci. 2025 Aug 19. doi: 10.1039/d5sc03416g.
Small organic rings are important molecular entities that have long played a crucial role in organic synthesis and medicinal chemistry. Similarly, small inorganic rings have shown promise in promoting bond activation and, in some cases, catalysis, although their synthesis is significantly more challenging. Here, we present a detailed experimental and theoretical investigation of three-membered heterocycles, azadistibiridines (2a-2d), synthesised cycloaddition of a distibene (SbTbb) with various azides. Additionally, for the first time, we were able to extend this protocol to dibismuthene (BiTbb), usually a more inert fragment, generating an iminobismuthane dimer (4a), showing divergent reactivity compared to that of distibene. Taking advantage of the strain imposed by these rings, we have been able to explore the reactivity of both classes of compounds, leading to the isolation of a ring-expanded product with GeBr (5) and a rare example of NHC-supported iminobismuthane (6). These findings represent a significant theoretical and practical advancement in main group chemistry where small inorganic rings have been used as tools to enhance the reactivity of heavy pnictogen multiple bonds.
小有机环是重要的分子实体,长期以来在有机合成和药物化学中发挥着关键作用。同样,小无机环在促进键活化以及在某些情况下的催化方面也显示出前景,尽管它们的合成难度要大得多。在这里,我们对通过二锑烯(SbTbb)与各种叠氮化物的环加成反应合成的三元杂环氮杂二锑啶(2a - 2d)进行了详细的实验和理论研究。此外,我们首次能够将该方法扩展到通常更惰性的片段二铋烯(BiTbb),生成亚氨基铋烷二聚体(4a),与二锑烯相比显示出不同的反应性。利用这些环所施加的张力,我们能够探索这两类化合物的反应性,从而分离出与GeBr形成的扩环产物(5)以及一个罕见的氮杂环卡宾支持的亚氨基铋烷实例(6)。这些发现代表了主族化学在理论和实践上的重大进展,其中小无机环已被用作增强重氮族元素多重键反应性的工具。