Sharp tips are critical for obtaining high resolution images in scanning probe microscopy (SPM), particularly in samples with large variations in topography. For tuning-fork-based SPM, such tips are commonly obtained by electrochemical etching of metallic wires (e.g., tungsten). Electrochemical etching of metallic wires is the preferred means of preparing tips for scanning tunneling microscopy (STM), and techniques for obtaining sharp tips have been investigated extensively. However, the requirements for STM and tuning-fork-based SPM are different. In particular, the wires used in STM are typically 250500μm in diameter, while the wires used for tuning-fork-based SPM are usually an order of magnitude narrower in order to minimize loading of the tuning fork: 2550μm and sometimes down to a few micrometers in diameter. Consequently, many of the recipes developed for etching thicker metallic wires for STM tips do not give optimal results for smaller diameter wires. The authors describe here a modification of the etching circuit of Ibe et al. that significantly improves the reproducibility and reliability of the etching process for thin wires, and discuss the parameters that affect the aspect ratio of produced tips.

1.
J. P.
Ibe
,
P. P.
Bey
,
S. L.
Brandow
,
R. A.
Brizzalora
,
N. A.
Burnham
,
D. P.
DiLella
,
K. P.
Lee
,
C. R. K.
Marrian
, and
J. P.
Colton
,
J. Vac. Sci. Technol. A
8
,
3570
(
1990
).
2.
A. H.
Sørensen
,
U.
Hvid
,
M. W.
Mortensen
, and
K. A.
Mørch
,
Rev. Sci. Instrum.
70
,
3059
(
1999
).
3.
Inger
Ekvall
,
Erik
Wahlström
,
Dan
Claesson
,
Häkan
Olin
, and
Eva
Olsson
,
Meas. Sci. Technol.
10
,
11
(
1999
).
4.
E.
Abelev
,
N.
Sezin
, and
Y.
Ein-Eli
,
Rev. Sci. Instrum.
76
,
106105
(
2005
).
5.
C.
Albonetti
,
M.
Cavallini
,
M.
Massi
,
J.-F.
Moulin
, and
F.
Biscarini
,
J. Vac. Sci. Technol. B
23
,
2564
(
2006
).
6.
Till
Hagedorn
,
Mehdi
El Ouali
,
William
Paul
,
David
Oliver
,
Yoichi
Miyahara
, and
Peter
Grütter
,
Rev. Sci. Instrum.
82
,
113903
(
2011
).
7.
Matthew M.
Jobbins
,
Annette F.
Raigoza
, and
S.
Alex Kandel
,
Rev. Sci. Instrum.
83
,
036105
(
2012
).
8.
Yasser
Khan
,
Hisham
Al-Falih
,
Yaping
Zhang
,
Tien
Khee Ng
, and
Boon S.
Ooi
,
Rev. Sci. Instrum.
83
,
063708
(
2012
).
9.
G.
Basnet
,
J. K.
Schoelz
,
P.
Xu
,
S. D.
Barber
,
M. L.
Ackerman
, and
P.
Thibado
,
J. Vac. Sci. Technol. B
31
,
043201
(
2013
).
10.
H.
Chen
,
W.
Xiao
,
X.
Wu
,
K.
Yang
, and
H.-J.
Gao
,
J. Vac. Sci. Technol. B
32
,
081801
(
2014
).
11.
J. A.
Morán Meza
,
C.
Lubin
,
F.
Thoyer
,
K. A.
Villegas Rosales
,
A. A.
Gutarra Espinoza
,
F.
Martin
, and
J.
Cousty
,
Carbon
86
,
363
(
2015
).
You do not currently have access to this content.