Alkanethiols on Platinum: Multicomponent Self-Assembled Monolayers

Dmitri Y. Petrovykh,* Hiromi Kimura-Suda,§ Aric Opdahl,§ Lee J. Richter,§ Michael J. Tarlov,§ and Lloyd J. Whitman
Physics Department, University of Maryland, College Park, Maryland 20742, Naval Research Laboratory, Washington, D.C. 20375, and National Institute of Standards and Technology, Gaithersburg, Maryland 20899
Langmuir, 2006, 22 (6), pp 2578–2587
DOI: 10.1021/la050928a
Publication Date (Web): February 17, 2006
Copyright © 2006 American Chemical Society
*

 To whom correspondence should be addressed. Dmitri Y. Petrovykh, Code 6177, Naval Research Laboratory, Washington, D.C. 20375-5342. E-mail:  dmitri.petrovykh@nrl.navy.mil.

,

 University of Maryland.

,

 Naval Research Laboratory.

,
§

 National Institute of Standards and Technology.

,

 Current address:  PerkinElmer Japan Co., Ltd., Yokohama, Japan.

,

 Current address:  Department of Chemistry, University of Wisconsin, La Crosse, WI 54601.

Abstract

Abstract Image

We have studied the formation of self-assembled monolayers (SAMs) of n-alkanethiols on platinum thin films using X-ray photoelectron spectroscopy (XPS), reflection−absorption infrared spectroscopy (RAIRS), spectroscopic ellipsometry (SE), and contact angle (CA) measurements. Specifically, SAMs of 1-hexanethiol, 1-dodecanethiol, and 1-octadecanethiol were grown on polycrystalline Pt films, and the effects of Pt surface preparation, deposition conditions, and solvent treatments on the initial quality and stability of the monolayer in air were investigated. The SAMs prepared under ambient conditions on piranha-cleaned and UV/ozone-cleaned substrates were compared to monolayers formed on template-stripped Pt in an inert atmosphere. We found that alkanethiols deposited from 1 mM ethanolic solutions on piranha-cleaned Pt formed densely packed monolayers in which alkyl chains were oriented close to the surface normal. Stored in the laboratory ambient, these monolayers were unchanged over about 1 week but were largely oxidized in about 1 month. No evidence was found of molecules being weakly bound within the monolayer or having undergone C−S bond scission; however, three distinct sulfur states were observed for all samples in the XPS of the S 2p region. The lowest- and highest-binding-energy components are assigned to alkylthiolate and partially oxidized alkylthiolate species, respectively. The remaining S 2p component (approximately one-third of the sulfur layer), intermediate in binding energy between the other two components, is attributed to a chemisorbed species with a S binding configuration distinct from the majority alkylthiolate:  for example, S bound to Pt bound to O, S with a different Pt coordination number, or S in an adsorbed disulfide.

Tools

History

  • Published In Issue March 14, 2006
  • Received April 7, 2005
    Revised November 23, 2005

Recommend & Share

Related Content

Other ACS content by these authors: