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Energy Level Alignment of Self-Assembled Linear Chains of Benzenediamine on Au(111) from First Principles...

by Guo Li, Tonatiuh Rangel, Zhen-fei Liu, Valentino R Cooper, Jeffrey Neaton
Publication Type
Journal
Journal Name
Physical Review B
Publication Date
Page Number
125429
Volume
93
Issue
12

Using density functional theory (DFT) with van der Waals functionals, we calculate the adsorption energetics and geometry of benzenediamine (BDA) molecules on Au(111) surfaces. Our results demonstrate that the reported self-assembled linear chain structure of BDA, stabilized via hydrogen bonds between amine groups, is energetically favored over previously-studied monomeric phases. Moreover, using a model based on many-body perturbation theory within the GW approximation, we obtain approximate self-energy corrections to the DFT highest occupied molecular orbital (HOMO) energy associated with BDA adsorbate phases. We find that, independent of coverage, the HOMO energy of the linear chain phase is lower relative to the Fermi energy than that of the monomer phase, and in good agreement with values measured with ultraviolet photoelectron spectroscopy and X-ray photoelectron spectroscopy.