Svane K L, Linderoth T R, Hammer B
Interdisciplinary Nanoscience Center (iNANO) and Department of Physics and Astronomy, Aarhus University, Aarhus, Denmark.
J Chem Phys. 2016 Feb 28;144(8):084708. doi: 10.1063/1.4942665.
We present a comprehensive theoretical investigation of the structures formed by self-assembly of tetrahydroxybenzene (THB)-derivatives on Cu(111). The THB molecule is known to dehydrogenate completely during annealing, forming a reactive radical which assembles into a close-packed structure or a porous metal-coordinated network depending on the coverage of the system. Here, we present details on how the structures are determined by density functional theory calculations, using scanning tunneling microscopy-derived information on the periodicity. The porous network is based on adatom trimers. By analysing the charge distribution of the structure, it is found that this unusual coordination motif is preferred because it simultaneously provides a good coordination of all oxygen atoms and allows for the formation of a two-dimensional network on the surface.
我们对四羟基苯(THB)衍生物在Cu(111)上自组装形成的结构进行了全面的理论研究。已知THB分子在退火过程中会完全脱氢,形成一个反应性自由基,该自由基会根据体系的覆盖度组装成密排结构或多孔金属配位网络。在此,我们详细介绍如何利用扫描隧道显微镜获得的关于周期性的信息,通过密度泛函理论计算来确定这些结构。多孔网络基于吸附原子三聚体。通过分析该结构的电荷分布发现,这种不寻常的配位模式是优选的,因为它同时能使所有氧原子得到良好配位,并允许在表面形成二维网络。