Ferrari Piero, Delgado-Callico Laia, Lushchikova Olga V, Bejide Matias, Wensink Frank J, Bakker Joost M, Baletto Francesca, Janssens Ewald
Quantum Solid-State Physics, KU Leuven, Celestijnenlaan 200d, 3001 Leuven, Belgium.
Department of Physics, King's College London, London WC2R 2LS, U.K.
J Phys Chem Lett. 2022 May 19;13(19):4309-4314. doi: 10.1021/acs.jpclett.2c00738. Epub 2022 May 9.
Noble gases are usually seen as utterly inert, likewise gold, which is typically conceived as the noblest of all metals. While one may expect that noble gases bind to gold via dispersion interactions only, strong bonds can be formed between noble gas atoms and small gold clusters. We combine mass spectrometry, infrared spectroscopy, and density functional theory calculations to address the bonding nature between Au ( ≤ 4) clusters and Ar, Kr, and Xe. We unambiguously determine the geometries and quantitatively uncover the bonding nature in AuNg (Ng = Ar, Kr, Xe) complexes. Each Au cluster can form covalent bonds with atop bound noble gas atoms, with strengths that increase with the noble gas atomic radius. This is demonstrated by calculated adsorption energies, Bader electron charges, and analysis of the electron density. The covalent bonding character, however, is limited to the atop-coordinated Ng atoms.
惰性气体通常被视为完全惰性的,金也是如此,它通常被认为是所有金属中最贵重的。虽然人们可能预期惰性气体仅通过色散相互作用与金结合,但在惰性气体原子和小金簇之间可以形成强键。我们结合质谱、红外光谱和密度泛函理论计算,来研究金(≤4)簇与氩、氪和氙之间的键合性质。我们明确确定了几何结构,并定量揭示了AuNg(Ng = Ar、Kr、Xe)配合物中的键合性质。每个金簇都可以与顶部配位的惰性气体原子形成共价键,其强度随惰性气体原子半径的增加而增强。这通过计算得到的吸附能、巴德电荷以及电子密度分析得到了证明。然而,共价键合特性仅限于顶部配位的Ng原子。