Nanofabrication of Small Copper Clusters on Gold(111) Electrodes by a Scanning Tunneling Microscope

Author:

Kolb D. M.1,Ullmann R.1,Will T.1

Affiliation:

1. Department of Electrochemistry, University of Ulm, 89069 Ulm, Germany.

Abstract

The use of scanning tunneling microscopy in an electrochemical environment as a tool for the nanoscale modification of gold electrodes was demonstrated. Small copper clusters, typically two to four atomic layers in height, were precisely positioned on a gold(111) electrode by a process in which copper was first deposited onto the tip of the scanning tunneling microscope, which then acted as a reservoir from which copper could be transferred to the surface during an appropriate approach of the tip to the surface. Tip approach and position were controlled externally by a microprocessor unit, allowing the fabrication of various patterns, cluster arrays, and “conducting wires” in a very flexible and convenient manner.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference20 articles.

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3. Becker R. S., Golovchenko J. A., Swartzentruber B. S., Nature 325, 419 (1987).

4. Eigler D. M., Schweizer E. K., ibid. 344, 524 (1990).

5. Crommie M. F., Lutz C. P., Eigler D. M., Science 262, 218 (1992).

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