nanotech@surfaces Laboratory, Empa, Swiss Federal Laboratories for Materials Science and Technology , Überlandstrasse 129, 8600 Dübendorf, Switzerland.
J Am Chem Soc. 2014 Oct 1;136(39):13666-71. doi: 10.1021/ja504126z. Epub 2014 Sep 18.
Bowl-shaped π-conjugated compounds offer the possibility to study curvature-dependent host-guest interactions and chemical reactivity in ideal model systems. For surface-adsorbed π bowls, however, only conformations with the bowl opening pointing away from the surface have been observed so far. Here we show for sumanene on Ag(111) that both bowl-up and bowl-down conformations can be stabilized. Analysis of the molecular layer as a function of coverage reveals an unprecedented structural phase transition involving a bowl inversion of one-third of the molecules. On the basis of scanning tunneling microscopy (STM) and complementary atomistic simulations, we develop a model that describes the observed phase transition in terms of a subtle interplay between inversion-dependent adsorption energies and intermolecular interactions. In addition, we explore the coexisting bowl-up and -down conformations with respect to host-guest binding of methane. STM reveals a clear energetic preference for methane binding to the concave face of sumanene.
碗状π共轭化合物为在理想模型系统中研究曲率依赖性主客体相互作用和化学反应性提供了可能。然而,对于表面吸附的π碗,迄今为止只观察到碗开口指向远离表面的构象。在这里,我们展示了在 Ag(111)上的 sumanene 可以稳定存在碗向上和碗向下两种构象。对分子层随覆盖度的分析揭示了一个前所未有的结构相变,涉及三分之一分子的碗反转。基于扫描隧道显微镜(STM)和互补的原子模拟,我们提出了一个模型,该模型根据反转相关的吸附能和分子间相互作用之间的微妙相互作用来描述观察到的相变。此外,我们还研究了共存的碗向上和向下构象,以探索甲烷的主客体结合。STM 显示甲烷与 sumanene 的凹面结合具有明显的能量偏好。