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首页> 外文期刊>Physical chemistry chemical physics: PCCP >STM fingerprint of molecule-adatom interactions in a self-assembled metal-organic surface coordination network on Cu(111)
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STM fingerprint of molecule-adatom interactions in a self-assembled metal-organic surface coordination network on Cu(111)

机译:Cu(111)自组装金属-有机表面配位网络中分子-原子相互作用的STM指纹图谱

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摘要

A novel approach of identifying metal atoms within a metal-organic surface coordination network using scanning tunnelling microscopy (STM) is presented. The Cu adatoms coordinated in the porous surface network of 1,3,8,10-tetraazaperopyrene (TAPP) molecules on a Cu(111) surface give rise to a characteristic electronic resonance in STM experiments. Using density functional theory calculations, we provide strong evidence that this resonance is a fingerprint of the interaction between the molecules and the Cu adatoms. We also show that the bonding of the Cu adatoms to the organic exodentate ligands is characterised by both the mixing of the nitrogen lone-pair orbitals of TAPP with states on the Cu adatoms and the partial filling of the lowest unoccupied molecular orbital (LUMO) of the TAPP molecule. Furthermore, the key interactions determining the surface unit cell of the network are discussed.
机译:提出了一种使用扫描隧道显微镜(STM)识别金属-有机表面配位网络内金属原子的新颖方法。在Cu(111)表面上的1,3,8,10-四氮杂op烯(TAPP)分子的多孔表面网络中配位的Cu原子引起了STM实验中的特征性电子共振。使用密度泛函理论计算,我们提供了有力的证据,表明这种共振是分子与Cu原子之间相互作用的指纹。我们还表明,Cu原子与有机外齿配体的键合以TAPP的氮孤对轨道与Cu原子上的状态混合以及部分填充的最低未占据分子轨道(LUMO)的特征为特征。 TAPP分子。此外,讨论了确定网络表面单元的关键交互。

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