A simple yet highly reproducible method to fabricate metallic electrodes with nanometer separation is presented. The fabrication is achieved by passing a large electrical current through a gold nanowire defined by electron-beam lithography and shadow evaporation. The current flow causes the electromigration of gold atoms and the eventual breakage of the nanowire. The breaking process yields two stable metallic electrodes separated by ∼1 nm with high efficiency. These electrodes are ideally suited for electron-transport studies of chemically synthesized nanostructures, and their utility is demonstrated here by fabricating single-electron transistors based on colloidal cadmium selenide nanocrystals.
REFERENCES
1.
L. A.
Bumm
, J. J.
Arnold
, M. T.
Cygan
, T. D.
Dunbar
, T. P.
Burgin
, L.
Jones
II, D. L.
Allara
, J. M.
Tour
, and P. S.
Weiss
, Science
271
, 1705
(1996
).2.
M. A.
Reed
, C.
Zhou
, C. J.
Muller
, T. P.
Burgin
, and J. M.
Tour
, Science
278
, 252
(1997
).3.
D.
Porath
, Y.
Levi
, M.
Tarabiah
, and O.
Millo
, Phys. Rev. B
56
, 9829
(1997
).4.
R. P.
Andres
, T.
Bein
, M.
Dorogi
, S.
Feng
, J. I.
Henderson
, C. P.
Kubiak
, W.
Mahoney
, R. G.
Osifchin
, and R.
Refenberger
, Science
272
, 1323
(1996
).5.
D. L.
Klein
, R.
Roth
, A. K. L.
Lim
, A. P.
Alivisatos
, and P. L.
McEuen
, Nature (London)
389
, 699
(1997
).6.
D. C.
Ralph
, C. T.
Black
, and M.
Tinkham
, Phys. Rev. Lett.
78
, 4087
(1997
).7.
L. P. Kouwenhoven, G. Schön, and L. L. Sohn, Mesoscopic Electron Transport (Kluwer, Dordrecht, 1997).
8.
9.
S. J.
Tans
, A. R. M.
Verschueren
, and C.
Dekker
, Nature (London)
393
, 49
(1998
).10.
11.
C.
Zhou
, C. J.
Muller
, M. R.
Deshpande
, J. W.
Sleight
, and M. A.
Reed
, Appl. Phys. Lett.
67
, 1160
(1995
).12.
D. L.
Klein
, P. L.
McEuen
, J. E. B.
Katari
, R.
Roth
, and A. P.
Alivisatos
, Appl. Phys. Lett.
68
, 2574
(1996
).13.
14.
15.
T.
Junno
, S.-B.
Carlsson
, H.
Xu
, L.
Montelius
, and L.
Samuelson
, Appl. Phys. Lett.
72
, 548
(1998
).16.
R.
Desmicht
, G.
Faini
, V.
Cros
, A.
Fert
, F.
Petroff
, and A.
Vaurès
, Appl. Phys. Lett.
72
, 386
(1998
).17.
18.
A. F.
Morpurgo
, D. B.
Robinson
, and C. M.
Marcus
, Appl. Phys. Lett.
74
, 2084
(1999
).19.
S. H. M. Persson, L. Olofsson, and L. Gunnarsson (private communications).
20.
T. P. Bigioni, L. E. Harrell, W. G. Cullen, D. K. Guthrie, R. L. Whetten, and P. N. First (private communications).
21.
22.
23.
24.
C. B.
Murray
, D. J.
Norris
, and M. G.
Bawendi
, J. Am. Chem. Soc.
115
, 8706
(1993
).25.
H. Park, A. K. L. Lim, A. P. Alivisatos, and P. L. McEuen (unpublished).
This content is only available via PDF.
© 1999 American Institute of Physics.
1999
American Institute of Physics
You do not currently have access to this content.