Adsorption of cytosine and aza derivatives of cytidine on Au single crystal surfaces
M. Iakhnenko, V. Feyer, N. Tsud, O. Plekan, F. Wang, M. Ahmed, O., Slobodyanyuk, R. G. Acres, V. Matol\'in, K. C. Prince

TL;DR
This study investigates how cytosine and its aza derivatives adsorb onto gold single crystal surfaces using spectroscopic techniques, revealing details about their bonding states, orientations, and tautomeric forms in different conditions.
Contribution
It provides new insights into the adsorption geometries, bonding mechanisms, and tautomeric states of cytosine derivatives on gold surfaces through combined experimental and ab initio calculations.
Findings
Cytosine adsorbs as a single tautomer in two chemical states.
Deposition method influences the molecular orientation and bonding.
All compounds chemisorb onto gold surfaces.
Abstract
The adsorption of cytosine on the Au(111) and Au(110) surfaces has been studied using both aqueous deposition and evaporation in vacuum to prepare the samples. Soft X-ray photoelectron spectroscopy (XPS) and near edge X-ray absorption fine structure spectroscopy (NEXAFS) were used to determine the electronic structure and orientation of the adsorbates. In addition, three derivatives of cytosine, 6-azacytosine, 6-azacytidine and 5- azacytidine, were studied. Monolayer films of the latter three samples were adsorbed on Au(111) from aqueous solution, and the nature of bonding was determined. Spectra have been interpreted in the light of published calculations of free cytosine molecules and new ab initio calculations of the other compounds. Surface core level shifts of Au 4f imply that all of these compounds are chemisorbed. Cytosine adsorbs as a single tautomer, but in two chemical states…
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Taxonomy
TopicsSurface Chemistry and Catalysis · Molecular Junctions and Nanostructures · Surface and Thin Film Phenomena
