Weigelt Sigrid, Busse Carsten, Petersen Lars, Rauls Eva, Hammer Bjørk, Gothelf Kurt V, Besenbacher Flemming, Linderoth Trolle R
Interdisciplinary Nanoscience Center at the University of Aarhus (iNANO), Department of Physics and Astronomy, University of Aarhus, DK-8000 Aarhus C, Denmark.
Nat Mater. 2006 Feb;5(2):112-7. doi: 10.1038/nmat1558. Epub 2006 Jan 15.
Self-assembly of adsorbed organic molecules is a promising route towards functional surface nano-architectures, and our understanding of associated dynamic processes has been significantly advanced by several scanning tunnelling microscopy (STM) investigations. Intramolecular degrees of freedom are widely accepted to influence ordering of complex adsorbates, but although molecular conformation has been identified and even manipulated by STM, the detailed dynamics of spontaneous conformational change in adsorbed molecules has hitherto not been addressed. Molecular surface structures often show important stereochemical effects as, aside from truly chiral molecules, a large class of so-called prochiral molecules become chiral once confined on a surface with an associated loss of symmetry. Here, we investigate a model system in which adsorbed molecules surprisingly switch between enantiomeric forms as they undergo thermally induced conformational changes. The associated kinetic parameters are quantified from time-resolved STM data whereas mechanistic insight is obtained from theoretical modelling. The chiral switching is demonstrated to enable an efficient channel towards formation of extended homochiral surface domains. Our results imply that appropriate prochiral molecules may be induced (for example, by seeding) to assume only one enantiomeric form in surface assemblies, which is of relevance for chiral amplification and asymmetric heterogenous catalysis.
吸附有机分子的自组装是通往功能性表面纳米结构的一条有前景的途径,并且通过若干扫描隧道显微镜(STM)研究,我们对相关动态过程的理解有了显著进展。分子内自由度被广泛认为会影响复杂吸附质的有序排列,但是尽管分子构象已被STM识别甚至操控,吸附分子自发构象变化的详细动力学迄今尚未得到研究。分子表面结构常常显示出重要的立体化学效应,因为除了真正的手性分子外,一大类所谓的前手性分子一旦被限制在具有相关对称性丧失的表面上就会变成手性分子。在这里,我们研究了一个模型系统,其中吸附分子在经历热诱导构象变化时惊人地在对映体形式之间切换。相关的动力学参数从时间分辨的STM数据中量化,而机理洞察则从理论建模中获得。手性切换被证明能够为扩展的同手性表面域的形成提供一条有效途径。我们的结果表明,合适的前手性分子可能被诱导(例如,通过晶种)在表面组装中仅呈现一种对映体形式,这对手性放大和不对称多相催化具有重要意义。