Schultz Jeremy F, Li Linfei, Mahapatra Sayantan, Jiang Nan
Department of Chemistry, University of Illinois Chicago, Chicago, Illinois 60607, United States of America.
J Phys Condens Matter. 2022 Mar 15;34(20). doi: 10.1088/1361-648X/ac57d8.
Surface-bound reactions have become a viable method to develop nanoarchitectures through bottom-up assembly with near atomic precision. However, the bottom-up fabrication of nanostructures on surfaces requires careful consideration of the intrinsic properties of the precursors and substrate as well as the complex interplay of any interactions that arise in the heterogeneous two-dimensional (2D) system. Therefore, it becomes necessary to consider these systems with characterization methods sensitive to such properties with suitable spatial resolution. Here, low temperature ultrahigh vacuum scanning tunneling microscopy (STM) and tip-enhanced Raman spectroscopy (TERS) were used to investigate the formation of 2D covalent networks via coupling reactions of tetra(4-bromophenyl)porphyrin (BrTPP) molecules on a Ag(100) substrate. Through the combination of STM topographic imaging and TERS vibrational fingerprints, the conformation of molecular precursors on the substrate was understood. Following the thermally activated coupling reaction, STM and TERS imaging confirm the covalent nature of the 2D networks and suggest that the apparent disorder arises from molecular flexibility.
表面结合反应已成为一种可行的方法,可通过具有近原子精度的自下而上组装来构建纳米结构。然而,在表面上自下而上制造纳米结构需要仔细考虑前驱体和基底的固有特性,以及在异质二维(2D)系统中出现的任何相互作用的复杂相互影响。因此,有必要用对这些特性敏感且具有合适空间分辨率的表征方法来研究这些系统。在这里,低温超高真空扫描隧道显微镜(STM)和针尖增强拉曼光谱(TERS)被用于研究通过四(4-溴苯基)卟啉(BrTPP)分子在Ag(100)基底上的偶联反应形成二维共价网络的过程。通过STM形貌成像和TERS振动指纹图谱的结合,了解了基底上分子前驱体的构象。在热激活偶联反应之后,STM和TERS成像证实了二维网络的共价性质,并表明明显的无序是由分子柔韧性引起的。