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Premonolayer oxidation of nanostructured gold: an important factor influencing electrocatalytic activity

journal contribution
posted on 2024-11-01, 06:03 authored by Anthony O'Mullane, Samuel IppolitoSamuel Ippolito, Ylias Sabri, Vipul BansalVipul Bansal, Suresh BhargavaSuresh Bhargava
The study of the electrodeposition of polycrystalline gold in aqueous solution is important from the viewpoint that in electrocatalysis applications ill-defined micro- and nanostructured surfaces are often employed. In this work, the morphology of gold was controlled by the electrodeposition potential and the introduction of Pb(CH3COO)2·3H2O into the plating solution to give either smooth or nanostructured gold crystallites or large dendritic structures which have been characterized by scanning electron microscopy (SEM). The latter structures were achieved through a novel in situ galvanic replacement of lead with AuCl4-(aq) during the course of gold electrodeposition. The electrochemical behavior of electrodeposited gold in the double layer region was studied in acidic and alkaline media and related to electrocatalytic performance for the oxidation of hydrogen peroxide and methanol. It was found that electrodeposited gold is a significantly better electrocatalyst than a polished gold electrode; however, performance is highly dependent on the chosen deposition parameters. The fabrication of a deposit with highly active surface states, comparable to those achieved at severely disrupted metal surfaces through thermal and electrochemical methods, does not result in the most effective electrocatalyst. This is due to significant premonolayer oxidation that occurs in the double layer region of the electrodeposited gold. In particular, in alkaline solution, where gold usually shows the most electrocatalytic activity, these active surface states may be overoxidized and inhibit the electrocatalytic reaction. However, the activity and morphology of an electrodeposited film can be tailored whereby electrodeposited gold that exhibits nanostructure within the crystallites on the surface demonstrated enhanced electrocatalytic activity compared to smaller smooth gold crystallites and larger dendritic structures in potential regions well within the double layer region.

History

Journal

Langmuir

Volume

25

Issue

6

Start page

3845

End page

3852

Total pages

8

Publisher

American Chemical Society

Place published

Washington, DC, USA

Language

English

Copyright

© 2009 American Chemical Society.

Former Identifier

2006011795

Esploro creation date

2020-06-22

Fedora creation date

2009-11-18

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