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Realization of either physisorption or chemisorption of 2H-tetraphenylporphyrin on the Cu(111) from density functional theory

Authors :
Naseri, Shabnam
Abbas, Ghulam Gilani
Johansson, Gustav
Koumpouras, Konstantinos
Baran, Jakub D.
Larsson, J. Andreas
Naseri, Shabnam
Abbas, Ghulam Gilani
Johansson, Gustav
Koumpouras, Konstantinos
Baran, Jakub D.
Larsson, J. Andreas
Publication Year :
2024

Abstract

The adsorption of organic molecules to surfaces is a central issue to achieve fully-functional molecular devices, for which porphyrins are well-studied due to their chemical stability and functional diversity. Herein, we investigate both the physical and the chemical adsorption of the free-base tetraphenylporphyrin 2H-TPP on the Cu(111) surface within the framework of density functional theory and find that the most stable physisorbed configuration is more weakly bound by -0.36 eV than the chemisorbed configuration. We use the electron localization function to investigate the difference in binding mechanisms between strong physisorption and weak chemisorption. We have computed a reaction barrier of 0.12 eV in going from physical binding to chemical bonding to the surface, and a barrier of 50 meV in going between neighboring physical binding sites. Our results support the possibility of realizing free-base porphyrins either physisorbed or chemisorbed on Cu(111) depending on the deposition procedure and experimental conditions.<br />Validerad;2024;Nivå 2;2024-03-25 (joosat);License full text: CC BY

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1428119707
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1088.1361-648x.ad2e27