Do two-dimensional "noble gas atoms" produce molecular honeycombs at a metal surface?

Wyrick, Jonathan; Kim, Dae-Ho; Sun, Dezheng; Cheng, Zhihai; Lu, Wenhao; Zhu, Yeming; Berland, Kristian; Kim, Yong Su et al. · Nano Lett · 2011

basic_science · Level V

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Abstract

Anthraquinone self-assembles on Cu(111) into a giant honeycomb network with exactly three molecules on each side. Here we propose that the exceptional degree of order achieved in this system can be explained as a consequence of the confinement of substrate electrons in the pores, with the pore size tailored so that the confined electrons can adopt a noble-gas-like two-dimensional quasi-atom configuration with two filled shells. Formation of identical pores in a related adsorption system (at different overall periodicity due to the different molecule size) corroborates this concept. A combination of photoemission spectroscopy with density functional theory computations (including van der Waals interactions) of adsorbate-substrate interactions allows quantum mechanical modeling of the spectra of the resultant quasi-atoms and their energetics.

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