Lee Woojung, Li Liang, Camarasa-Gómez María, Hernangómez-Pérez Daniel, Roy Xavier, Evers Ferdinand, Inkpen Michael S, Venkataraman Latha
Department of Chemistry, Columbia University, New York, NY, 10027, USA.
Institute of Theoretical Physics, University of Regensburg, 93040, Regensburg, Germany.
Nat Commun. 2024 Feb 16;15(1):1439. doi: 10.1038/s41467-024-45707-z.
Metal-metal contacts, though not yet widely realized, may provide exciting opportunities to serve as tunable and functional interfaces in single-molecule devices. One of the simplest components which might facilitate such binding interactions is the ferrocene group. Notably, direct bonds between the ferrocene iron center and metals such as Pd or Co have been demonstrated in molecular complexes comprising coordinating ligands attached to the cyclopentadienyl rings. Here, we demonstrate that ferrocene-based single-molecule devices with Fe-Au interfacial contact geometries form at room temperature in the absence of supporting coordinating ligands. Applying a photoredox reaction, we propose that ferrocene only functions effectively as a contact group when oxidized, binding to gold through a formal Fe center. This observation is further supported by a series of control measurements and density functional theory calculations. Our findings extend the scope of junction contact chemistries beyond those involving main group elements, lay the foundation for light switchable ferrocene-based single-molecule devices, and highlight new potential mechanistic function(s) of unsubstituted ferrocenium groups in synthetic processes.
金属-金属接触尽管尚未得到广泛应用,但可能为单分子器件中作为可调谐和功能性界面提供令人兴奋的机会。可能促进这种结合相互作用的最简单成分之一是二茂铁基团。值得注意的是,在包含连接到环戊二烯基环的配位配体的分子配合物中,已证明二茂铁铁中心与钯或钴等金属之间存在直接键合。在此,我们证明了具有Fe-Au界面接触几何结构的二茂铁基单分子器件在室温下无需支持配位配体即可形成。通过光氧化还原反应,我们提出二茂铁仅在氧化时才有效地作为接触基团起作用,通过形式上的铁中心与金结合。这一观察结果得到了一系列对照测量和密度泛函理论计算的进一步支持。我们的研究结果扩展了结接触化学的范围,超越了涉及主族元素的范围,为基于二茂铁的光控单分子器件奠定了基础,并突出了未取代的二茂铁鎓基团在合成过程中的新潜在机理功能。