Houtsma R S Koen, van Nyendaal Floris, Stöhr Meike
Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747AG, Groningen, The Netherlands.
Commun Chem. 2024 Mar 5;7(1):51. doi: 10.1038/s42004-024-01137-y.
Methods to control chiral-selectivity in molecular reactions through external inputs are of importance, both from a fundamental and technological point of view. Here, the self-assembly of prochiral 6,12-dibromochrysene monomers on Ag(110) is studied using scanning tunneling microscopy. Deposition of the monomers on a substrate held at room temperature leads to the formation of 1D achiral organometallic polymers. When the monomers are instead deposited on a substrate held at 373 K, homochiral organometallic polymers consisting of either the left- or right-handed enantiomer are formed. Post-deposition annealing of room temperature deposited samples at >373 K does not transform the achiral 1D organometallic polymers into homochiral ones and thus, does not yield the same final structure as if depositing onto a substrate held at the same elevated temperature. Furthermore, annealing promotes neither the formation of 1D covalently-coupled polymers nor the formation of graphene nanoribbons. Our results identify substrate temperature as an important factor in on-surface chiral synthesis, thereby demonstrating the importance of considering kinetic effects and the decisive role they can play in structure formation.
从基础和技术角度来看,通过外部输入来控制分子反应中的手性选择性的方法都很重要。在此,使用扫描隧道显微镜研究了前手性6,12-二溴并四苯单体在Ag(110)上的自组装。将单体沉积在室温下的基底上会导致形成一维非手性有机金属聚合物。相反,当单体沉积在保持在373 K的基底上时,会形成由左旋或右旋对映体组成的同手性有机金属聚合物。室温沉积样品在>373 K下进行沉积后退火,不会将非手性的一维有机金属聚合物转变为同手性聚合物,因此,不会产生与沉积在相同高温基底上相同的最终结构。此外,退火既不会促进一维共价偶联聚合物的形成,也不会促进石墨烯纳米带的形成。我们的结果确定了基底温度是表面手性合成中的一个重要因素,从而证明了考虑动力学效应及其在结构形成中所起的决定性作用的重要性。