Substrate effects in the supramolecular assembly of 1,3,5-benzene tricarboxylic acid on graphite and graphene
Data(s) |
30/06/2015
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Resumo |
The behavior of small molecules on a surface depends critically on both molecule–substrate and intermolecular interactions. We present here a detailed comparative investigation of 1,3,5-benzene tricarboxylic acid (trimesic acid, TMA) on two different surfaces: highly oriented pyrolytic graphite (HOPG) and single-layer graphene (SLG) grown on a polycrystalline Cu foil. On the basis of high-resolution scanning tunnelling microscopy (STM) images, we show that the epitaxy matrix for the hexagonal TMA chicken wire phase is identical on these two surfaces, and, using density functional theory (DFT) with a non-local van der Waals correlation contribution, we identify the most energetically favorable adsorption geometries. Simulated STM images based on these calculations suggest that the TMA lattice can stably adsorb on sites other than those identified to maximize binding interactions with the substrate. This is consistent with our net energy calculations that suggest that intermolecular interactions (TMA–TMA dimer bonding) are dominant over TMA–substrate interactions in stabilizing the system. STM images demonstrate the robustness of the TMA films on SLG, where the molecular network extends across the variable topography of the SLG substrates and remains intact after rinsing and drying the films. These results help to elucidate molecular behavior on SLG and suggest significant similarities between adsorption on HOPG and SLG. |
Formato |
application/pdf |
Identificador | |
Publicador |
American Chemical Society |
Relação |
http://eprints.qut.edu.au/85668/1/MacLeod_Langmuir_resubmission.pdf DOI:10.1021/la5048886 MacLeod, Jennifer, Lipton-Duffin, Josh, Cui, Daling, De Feyter, Steven, & Rosei, Federico (2015) Substrate effects in the supramolecular assembly of 1,3,5-benzene tricarboxylic acid on graphite and graphene. Langmuir, 31(25), pp. 7016-7024. |
Direitos |
Copyright 2015 American Chemical Society |
Fonte |
School of Chemistry, Physics & Mechanical Engineering; Institute for Future Environments; Science & Engineering Faculty |
Palavras-Chave | #020403 Condensed Matter Modelling and Density Functional Theory #020406 Surfaces and Structural Properties of Condensed Matter #030603 Colloid and Surface Chemistry |
Tipo |
Journal Article |