Swinburne
Browse

Tuning the hydrophobicity of mica surfaces by hyperthermal Ar ion irradiation

Download (453.63 kB)
journal contribution
posted on 2024-07-09, 13:33 authored by Adrian Keller, Monika Fritzsche, Ryosuke Ogaki, Ilko Bald, Stefan Facsko, Mingdong Dong, Peter KingshottPeter Kingshott, Flemming Besenbacher
The hydrophobicity of surfaces has a strong influence on their interactions with biomolecules such as proteins. Therefore, for in vitro studies of bio-surface interactions model surfaces with tailored hydrophobicity are of utmost importance. Here, we present a method for tuning the hydrophobicity of atomically flat mica surfaces by hyperthermal Ar ion irradiation. Due to the sub-100 eV energies, only negligible roughening of the surface is observed at low ion fluences and also the chemical composition of the mica crystal remains almost undisturbed. However, the ion irradiation induces the preferential removal of the outermost layer of K+ ions from the surface, leading to the exposure of the underlying aluminosilicate sheets which feature a large number of centers for C adsorption. The irradiated surface thus exhibits an enhanced chemical reactivity toward hydrocarbons, resulting in the adsorption of a thin hydrocarbon film from the environment. Aging these surfaces under ambient conditions leads to a continuous increase of their contact angle until a fully hydrophobic surface with a contact angle ›80° is obtained after a period of about 3 months. This method thus enables the fabrication of ultrasmooth biological model surfaces with precisely tailored hydrophobicity.

History

Available versions

PDF (Published version)

ISSN

0021-9606

Journal title

Journal of Chemical Physics

Volume

134

Issue

10

Article number

article no. 104705

Publisher

American Institute of Physics

Copyright statement

Copyright © 2011 American Institute of Physics. The published version is reproduced with the permission of the publisher.

Language

eng

Usage metrics

    Publications

    Categories

    No categories selected

    Keywords

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC