Deng Chong, Liang Jiefeng, Sun Rong, Wang Yi, Fu Peng-Xiang, Wang Bing-Wu, Gao Song, Huang Wenliang
Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, P. R. China.
Beijing Key Laboratory for Magnetoelectric Materials and Devices, Beijing, 100871, P. R. China.
Nat Commun. 2023 Aug 3;14(1):4657. doi: 10.1038/s41467-023-40403-w.
Understanding and exploiting the redox properties of uranium is of great importance because uranium has a wide range of possible oxidation states and holds great potential for small molecule activation and catalysis. However, it remains challenging to stabilise both low and high-valent uranium ions in a preserved ligand environment. Herein we report the synthesis and characterisation of a series of uranium(II-VI) complexes supported by a tripodal tris(amido)arene ligand. In addition, one- or two-electron redox transformations could be achieved with these compounds. Moreover, combined experimental and theoretical studies unveiled that the ambiphilic uranium-arene interactions are the key to balance the stabilisation of low and high-valent uranium, with the anchoring arene acting as a δ acceptor or a π donor. Our results reinforce the design strategy to incorporate metal-arene interactions in stabilising multiple oxidation states, and open up new avenues to explore the redox chemistry of uranium.
了解和利用铀的氧化还原性质非常重要,因为铀具有多种可能的氧化态,在小分子活化和催化方面具有巨大潜力。然而,在保留的配体环境中稳定低价和高价铀离子仍然具有挑战性。在此,我们报告了一系列由三脚架式三(酰胺基)芳烃配体支撑的铀(II - VI)配合物的合成与表征。此外,这些化合物可以实现单电子或双电子氧化还原转变。而且,结合实验和理论研究表明,亲双性的铀 - 芳烃相互作用是平衡低价和高价铀稳定性的关键,其中锚定的芳烃充当δ受体或π供体。我们的结果强化了在稳定多种氧化态中纳入金属 - 芳烃相互作用的设计策略,并为探索铀的氧化还原化学开辟了新途径。