Electrowetting on conductors: anatomy of the phenomenon

Author:

Ounnunkad Kontad12345,Patten Hollie V.1234,Velický Matěj1234,Farquhar Anna K.678910,Brooksby Paula A.678910,Downard Alison J.678910,Dryfe Robert A. W.123411ORCID

Affiliation:

1. School of Chemistry

2. University of Manchester

3. Manchester M13 9PL

4. UK

5. Chiang Mai University

6. MacDiarmid Institute for Advanced Materials and Nanotechnology

7. Department of Chemistry

8. University of Canterbury

9. Christchurch 8140

10. New Zealand

11. National Graphene Institute

Abstract

We have recently reported that reversible electrowetting can be observed on the basal plane of graphite, without the presence of a dielectric layer, in both liquid/air and liquid/liquid configurations. The influence of carbon structure on the wetting phenomenon is investigated in more detail here. Specifically, it is shown that the adsorption of adventitious impurities on the graphite surface markedly suppresses the electrowetting response. Similarly, the use of pyrolysed carbon films, although exhibiting a roughness below the threshold previously identified as the barrier to wetting on basal plane graphite, does not give a noticeable electrowetting response, which leads us to conclude that specific interactions at the water–graphite interface as well as graphite crystallinity are responsible for the reversible response seen in the latter case. Preliminary experiments on mechanically exfoliated and chemical vapour deposition grown graphene are also reported.

Funder

Engineering and Physical Sciences Research Council

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry

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