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On-Surface Metalation and 2D Self-Assembly of Pyrphyrin Molecules Into Metal-Coordinated Networks on Cu(111)

机译:卟啉分子的表面金属化和二维自组装成Cu(111)上的金属配位网络

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摘要

The metalation of the tetradentate molecule pyrphyrin by copper substrate atoms on a Cu(111) surface is studied. Pyrphyrin, in contrast to porphyrin, consists of four fused pyridine groups instead of pyrrol groups. Using thermal desorption spectroscopy (TDS) and N 1s X-ray photoelectron spectroscopy (XPS), we show that metalation of the monolayer of pyrphyrin with Cu atoms from the Cu(111) surface occurs at 377 K. The formation of an extended two-dimensional (2D) network is observed with scanning tunneling microscopy (STM). A honeycomb-like lattice of metalated pyrphyrin molecules is formed by intermolecular connection via the two cyano groups at the periphery of pyrphyrin as well as Cu adatoms. Dehydrogenation at the periphery of the molecule is observed during annealing at 520 K. The surface-adsorbed metal-pyrphyrin has the potential to serve as a molecular catalyst.
机译:研究了铜(111)表面上的铜基原子对四齿分子卟啉的金属化作用。与卟啉相反,卟啉由四个稠合的吡啶基而不是吡咯基组成。使用热脱附光谱(TDS)和N 1s X射线光电子能谱(XPS),我们显示了在377 K处,具有来自Cu(111)表面的Cu原子的卟啉单层金属化。扫描隧道显微镜(STM)观察到三维(2D)网络。金属化的卟啉分子的蜂窝状晶格是通过分子之间的连接而形成的,该分子间的连接是通过卟啉外围的两个氰基以及Cu原子构成的。在520 K的退火过程中观察到了分子外围的脱氢作用。表面吸附的金属卟啉具有用作分子催化剂的潜力。

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