Self-assembly of a 1-eicosanethiolate layer on InSb(100)

1-eicosanethiolate molecules form relatively weak bonds with the surface of InSb(100) limiting the order of the self-assembled monolayer despite the long length of the alkyl chain. Heating to only 225 °C in vacuum completely desorbed the eicosanethiolate layer from the surface based on x-ray photoel...

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Main Authors: Contreras, Yissel, Muscat, Anthony J.
Other Authors: University of Arizona
Language:en
Published: Elsevier 2016
Subjects:
Online Access:http://hdl.handle.net/10150/621766
http://arizona.openrepository.com/arizona/handle/10150/621766
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6217662016-12-21T03:00:33Z Self-assembly of a 1-eicosanethiolate layer on InSb(100) Contreras, Yissel Muscat, Anthony J. University of Arizona Passivation Self-assembly Liquid phase Eicosanethiol InSb(100) 1-eicosanethiolate molecules form relatively weak bonds with the surface of InSb(100) limiting the order of the self-assembled monolayer despite the long length of the alkyl chain. Heating to only 225 °C in vacuum completely desorbed the eicosanethiolate layer from the surface based on x-ray photoelectron spectroscopy. Even after deposition times as long as 20 h in ethanol, the asymmetric methylene stretch was at 2925 cm-1 in the attenuated total reflection Fourier transform infrared spectrum, which is indicative of alkane chains that are incompletely ordered. Atomic force microscopy images combined with ellipsometry showed that the eicosanethiolate layer conformed to the rough InSb(100) starting surface (2.3±0.2 nm RMS). The reoxidation kinetics in air of InSb(100) and InSb(111)B covered with eicosanethiolate layers was the same despite the lower surface roughness of the latter (0.64±0.14 nm). The bond that the S head group makes with the substrate is the primary factor that determines the cohesiveness of the molecules on the surface. Although interactions between the alkane chains in the layer are sufficient to form a self-assembled layer, the fluidity of the molecules in the layer compromised the chemical passivation of the surface resulting in reoxidation in air after 20 minutes. 2016-05 Article Self-assembly of a 1-eicosanethiolate layer on InSb(100) 2016, 370:67 Applied Surface Science 01694332 10.1016/j.apsusc.2016.02.099 http://hdl.handle.net/10150/621766 http://arizona.openrepository.com/arizona/handle/10150/621766 Applied Surface Science en http://linkinghub.elsevier.com/retrieve/pii/S0169433216302689 Copyright © 2016 Elsevier B.V. All rights reserved. Elsevier
collection NDLTD
language en
sources NDLTD
topic Passivation
Self-assembly
Liquid phase
Eicosanethiol
InSb(100)
spellingShingle Passivation
Self-assembly
Liquid phase
Eicosanethiol
InSb(100)
Contreras, Yissel
Muscat, Anthony J.
Self-assembly of a 1-eicosanethiolate layer on InSb(100)
description 1-eicosanethiolate molecules form relatively weak bonds with the surface of InSb(100) limiting the order of the self-assembled monolayer despite the long length of the alkyl chain. Heating to only 225 °C in vacuum completely desorbed the eicosanethiolate layer from the surface based on x-ray photoelectron spectroscopy. Even after deposition times as long as 20 h in ethanol, the asymmetric methylene stretch was at 2925 cm-1 in the attenuated total reflection Fourier transform infrared spectrum, which is indicative of alkane chains that are incompletely ordered. Atomic force microscopy images combined with ellipsometry showed that the eicosanethiolate layer conformed to the rough InSb(100) starting surface (2.3±0.2 nm RMS). The reoxidation kinetics in air of InSb(100) and InSb(111)B covered with eicosanethiolate layers was the same despite the lower surface roughness of the latter (0.64±0.14 nm). The bond that the S head group makes with the substrate is the primary factor that determines the cohesiveness of the molecules on the surface. Although interactions between the alkane chains in the layer are sufficient to form a self-assembled layer, the fluidity of the molecules in the layer compromised the chemical passivation of the surface resulting in reoxidation in air after 20 minutes.
author2 University of Arizona
author_facet University of Arizona
Contreras, Yissel
Muscat, Anthony J.
author Contreras, Yissel
Muscat, Anthony J.
author_sort Contreras, Yissel
title Self-assembly of a 1-eicosanethiolate layer on InSb(100)
title_short Self-assembly of a 1-eicosanethiolate layer on InSb(100)
title_full Self-assembly of a 1-eicosanethiolate layer on InSb(100)
title_fullStr Self-assembly of a 1-eicosanethiolate layer on InSb(100)
title_full_unstemmed Self-assembly of a 1-eicosanethiolate layer on InSb(100)
title_sort self-assembly of a 1-eicosanethiolate layer on insb(100)
publisher Elsevier
publishDate 2016
url http://hdl.handle.net/10150/621766
http://arizona.openrepository.com/arizona/handle/10150/621766
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AT muscatanthonyj selfassemblyofa1eicosanethiolatelayeroninsb100
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