Frezza Federico, Matěj Adam, Sánchez-Grande Ana, Carrera Manuel, Mutombo Pingo, Kumar Manish, Curiel David, Jelínek Pavel
Institute of Physics of Czech Academy of Sciences, Cukrovarnická 10, 16200 Prague 6 ,Czech Republic.
Faculty of Nuclear Sciences and Physical Engineering, Czech Technical University in Prague, Břehová 78/7,11519 Prague 1, Czech Republic.
J Am Chem Soc. 2024 Feb 7;146(5):3531-3538. doi: 10.1021/jacs.3c13702. Epub 2024 Jan 25.
The design of supramolecular organic radical cages and frameworks is one of the main challenges in supramolecular chemistry. Their interesting material properties and wide applications make them very promising for (photo)redox catalysis, sensors, or host-guest spin-spin interactions. However, the high reactivity of radical organic systems makes the design of such supramolecular radical assemblies challenging. Here, we report the on-surface synthesis of a purely organic supramolecular radical framework on Au(111), by combining supramolecular and on-surface chemistry. We employ a tripodal precursor, functionalized with 7-azaindole groups that, catalyzed by a single gold atom on the surface, forms a radical molecular product constituted by a π-extended fluoradene-based radical core. The radical products self-assemble through hydrogen bonding, leading to extended 2D domains ordered in a Kagome-honeycomb lattice. This approach demonstrates the potential of on-surface synthesis for developing 2D supramolecular radical organic chemistry.
超分子有机自由基笼和框架的设计是超分子化学中的主要挑战之一。它们有趣的材料特性和广泛的应用使其在(光)氧化还原催化、传感器或主客体自旋-自旋相互作用方面极具前景。然而,自由基有机体系的高反应活性使得此类超分子自由基组装体的设计颇具挑战性。在此,我们通过结合超分子化学和表面化学,报道了在Au(111)表面上纯有机超分子自由基框架的表面合成。我们采用一种用7-氮杂吲哚基团功能化的三脚架前驱体,该前驱体在表面单个金原子的催化下,形成由基于芴的π-扩展自由基核心构成的自由基分子产物。自由基产物通过氢键自组装,形成在 Kagome-蜂窝晶格中有序排列的扩展二维域。这种方法展示了表面合成在发展二维超分子自由基有机化学方面的潜力。