Infrared ellipsometric study of hydrogen-bonded long-chain thiolates on gold: Towards resolving structural details

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Date
2011
Volume
2
Issue
2
Journal
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Publisher
Basel : MDPI
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Abstract

A set of newly synthesized aryl-substituted amides of 16-mercaptohexadecanoic acid (R = 4-OH; 3,5-di-OH) are self-assembled on Au(111) substrate. Self assembled monolayers (SAMs) formed by these molecules are studied by ellipsometry from infrared to visible spectral range. Best fit calculations based on the three-phase optical model are employed in order to determine the average tilt angle of the hydrocarbon chains. The data revealed that the SAMs reside in a crystalline-like environment as the long methylene chains predominantly exist in all-trans conformation. The calculated tilt angle of the hydrocarbon chain is decreased by approximately 12° in comparison with the one for the correspondent long-chain n-alkyl thiols. Strong hydrogen bonded networks were detected between the amide proton and the carbonyl oxygen as well as between hydroxyl groups in the end aryl substituents. The transition dipole moments of the C=O, N-H and O-H modes are oriented almost parallel to the gold surface.

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Keywords
Aryl-substituted long-chain thiols, Hydrogen bonds, IR ellipsometry
Citation
Tsankov, D., Philipova, I., Kostova, K., & Hinrichs, K. (2011). Infrared ellipsometric study of hydrogen-bonded long-chain thiolates on gold: Towards resolving structural details. 2(2). https://doi.org//10.3390/mi2020306
License
CC BY-NC-SA 3.0 Unported