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  5. Electron Transfer Kinetics on Mono- and Multilayer Graphene

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Article
English
2014

Electron Transfer Kinetics on Mono- and Multilayer Graphene

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English
2014
ACS Nano
Vol 8 (10)
DOI: 10.1021/nn504298r

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Konstantin ‘kostya’  Novoselov
Konstantin ‘kostya’ Novoselov

The University of Manchester

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Matěj Velický
Dan F. Bradley
Adam J. Cooper
+9 more

Abstract

Understanding of the electrochemical properties of graphene, especially the electron transfer kinetics of a redox reaction between the graphene surface and a molecule, in comparison to graphite or other carbon-based materials, is essential for its potential in energy conversion and storage to be realized. Here we use voltammetric determination of the electron transfer rate for three redox mediators, ferricyanide, hexaammineruthenium, and hexachloroiridate (Fe(CN)63–, Ru(NH3)63+, and IrCl62–, respectively), to measure the reactivity of graphene samples prepared by mechanical exfoliation of natural graphite. Electron transfer rates are measured for varied number of graphene layers (1 to ca. 1000 layers) using microscopic droplets. The basal planes of mono- and multilayer graphene, supported on an insulating Si/SiO2 substrate, exhibit significant electron transfer activity and changes in kinetics are observed for all three mediators. No significant trend in kinetics with flake thickness is discernible for each mediator; however, a large variation in kinetics is observed across the basal plane of the same flakes, indicating that local surface conditions affect the electrochemical performance. This is confirmed by in situ graphite exfoliation, which reveals significant deterioration of initially, near-reversible kinetics for Ru(NH3)63+ when comparing the atmosphere-aged and freshly exfoliated graphite surfaces.

How to cite this publication

Matěj Velický, Dan F. Bradley, Adam J. Cooper, E.W. Hill, Ian A. Kinloch, Artem Mishchenko, Konstantin ‘kostya’ Novoselov, Hollie V. Patten, Péter S. Tóth, Anna T. Valota, Stephen D. Worrall, Robert A. W. Dryfe (2014). Electron Transfer Kinetics on Mono- and Multilayer Graphene. ACS Nano, 8(10), pp. 10089-10100, DOI: 10.1021/nn504298r.

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Publication Details

Type

Article

Year

2014

Authors

12

Datasets

0

Total Files

0

Language

English

Journal

ACS Nano

DOI

10.1021/nn504298r

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