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首页> 外文期刊>ACS nano >Understanding the interaction of the porphyrin macrocycle to reactive metal substrates: Structure, bonding, and adatom capture
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Understanding the interaction of the porphyrin macrocycle to reactive metal substrates: Structure, bonding, and adatom capture

机译:了解卟啉大环与反应性金属底物的相互作用:结构,键合和吸附原子

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摘要

We investigate the adsorption and conformation of free-base porphines on Cu(110) using STM, reflection absorption infrared spectroscopy, and periodic DFT calculations in order to understand how the central polypyrrole macrocycle, common to all porphyrins, interacts with a reactive metal surface. We find that the macrocycle forms a chemisorption bond with the surface, arising from electron donation into down-shifted and nearly degenerate unoccupied porphine π-orbitals accompanied with electron back-donation from molecular π-orbitals. Our calculations show that van der Waals interactions give rise to an overall increase in the adsorption energy but only minor changes in the adsorption geometry and electronic structure. In addition, we observe copper adatoms being weakly attracted to adsorbed porphines at specific molecular sites. These results provide important insights into porphyrin-surface interactions that, ultimately, will govern the design of robust surface-mounted molecular devices based on this important class of molecules.
机译:我们使用STM,反射吸收红外光谱和周期性DFT计算研究了游离碱卟啉在Cu(110)上的吸附和构象,以了解所有卟啉共有的中心聚吡咯大环与反应性金属表面的相互作用。我们发现,大环与表面形成化学吸附键,这是由于电子的供体转变成下移的,几乎简并的未占据的卟啉π轨道,并伴随着电子从分子π轨道的反向提供。我们的计算表明范德华相互作用会引起吸附能的整体增加,但吸附几何形状和电子结构只会发生很小的变化。此外,我们观察到铜吸附原子在特定的分子位置被弱吸附到吸附的卟啉上。这些结果为卟啉与表面的相互作用提供了重要的见识,而卟啉与表面的相互作用最终将决定基于这一重要分子类别的坚固的表面安装分子器件的设计。

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