Department of Chemistry, National University of Singapore, Singapore, 117543, Singapore.
State Key Laboratory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Nanjing University, 210023, Nanjing, China.
Nat Commun. 2018 Nov 19;9(1):4871. doi: 10.1038/s41467-018-07323-6.
Molecular tessellations are often discovered serendipitously, and the mechanisms by which specific molecules can be tiled seamlessly to form periodic tessellation remain unclear. Fabrication of molecular tessellation with higher symmetry compared with traditional Bravais lattices promises potential applications as photonic crystals. Here, we demonstrate that highly complex tessellation can be constructed on Au(111) from a single molecular building block, hexakis(4-iodophenyl)benzene (HPBI). HPBI gives rise to two self-assembly phases on Au(111) that possess the same geometric symmetry but different packing densities, on account of the presence of halogen-bonded and halogen-metal coordinated networks. Sub-domains of these phases with self-similarity serve as tiles in the periodic tessellations to express polygons consisting of parallelograms and two types of triangles. Our work highlights the important principle of constructing multiple phases with self-similarity from a single building block, which may constitute a new route to construct complex tessellations.
分子镶嵌通常是偶然发现的,而特定分子如何能够无缝地镶嵌以形成周期性的镶嵌仍然不清楚。与传统的布拉维晶格相比,具有更高对称性的分子镶嵌的制造有望在光子晶体中得到应用。在这里,我们证明了可以从单个分子构建块六(4-碘苯基)苯(HPBI)在 Au(111)上构建高度复杂的镶嵌。由于存在卤键和卤金属配位网络,HPBI 在 Au(111)上产生了具有相同几何对称性但不同堆积密度的两种自组装相。这些相的具有自相似性的子域作为周期性镶嵌的镶嵌,以表达由平行四边形和两种类型的三角形组成的多边形。我们的工作强调了从单个构建块构建具有自相似性的多个相的重要原则,这可能构成构建复杂镶嵌的新途径。