Mahl Magnus, Niyas M A, Shoyama Kazutaka, Würthner Frank
Institut für Organische Chemie, Universität Würzburg, Würzburg, Germany.
Center for Nanosystems Chemistry (CNC), Universität Würzburg, Würzburg, Germany.
Nat Chem. 2022 Apr;14(4):457-462. doi: 10.1038/s41557-021-00861-5. Epub 2022 Feb 7.
Polycyclic aromatic hydrocarbons (PAHs) show promise for applications in functional devices such as organic photovoltaics and field-effect transistors, but, although nanometre-sized PAHs-often referred to as nanographenes-have been well investigated as single-layer molecules, their multilayer counterparts remain rather unexplored. Here we show the assembly of a C nanographene derivative (comprising a planar core decorated with four meta-terphenyl-imide moieties at its periphery) into multilayer stacks with smaller PAHs ranging from naphthalene to ovalene and hexabenzocoronene. The functionalized C nanographene serves as a ditopic host that can accommodate a smaller PAH on either side of its planar core, in cavities delimited by its bulky imide substituents. Bilayers and trilayers (that is, complexes with 1:1 and 1:2 host:guest ratios, respectively) were observed in solution, and dimers of these complexes as well as multilayer compounds were isolated in the solid state. Quantum-chemical calculations indicate that dispersion forces are the main stabilizing factor for these complexes.
多环芳烃(PAHs)在有机光伏和场效应晶体管等功能器件中的应用前景广阔。然而,尽管纳米尺寸的PAHs(通常称为纳米石墨烯)作为单层分子已得到充分研究,但其多层结构仍未得到充分探索。在此,我们展示了一种碳纳米石墨烯衍生物(其平面核心周围装饰有四个间三联苯酰亚胺基团)与从萘到椭圆烯和六苯并蔻等较小PAHs组装成多层堆叠结构。功能化的碳纳米石墨烯作为一种双位点主体,在其平面核心两侧,由其庞大的酰亚胺取代基界定的空腔中,可以容纳较小的PAH。在溶液中观察到了双层和三层结构(即分别具有1:1和1:2主客体比例的配合物),并且在固态中分离出了这些配合物的二聚体以及多层化合物。量子化学计算表明,色散力是这些配合物的主要稳定因素。