Formation of Atomic-Sized Contacts by Electrochemical Methods
M. R. Calvo, A. I. Mares, V. Climent, J. M. van Ruitenbeek, C. Untiedt
Abstract
Electrochemical methods have recently become an interesting tool for fabricating and characterizing nanostructures at room temperature. Simplicity, low cost and reversibility are some of the advantages of this technique that allows to work at the nanoscale without requiring sophisticated instrumentation. In our experimental setup, we measure the conductance across a nanocontact fabricated either by dissolving a macroscopic gold wire or by depositing gold in between two separated gold electrodes. We have achieved a high level of control on the electrochemical fabrication of atomic-sized contacts in gold. The use of electrochemistry as a reproducible technique to prepare nanocontacts will open several possibilities that are not feasible with other methodologies. It involves, also, the possibility of reproducing experiments that today are made by more expensive, complicated or irreversible methods. As example, we show here a comparison of the results when looking for shell effects in gold nanocontacts with those obtained by other techniques.
Create a lesson
Related papers
Chiral phonons driven by chiral cavities
V. A. S. V. Bittencourt, N. Shabala, R. M. Geilhufe et al.
Entanglement from particle number fluctuations in a second-order topological insulator
Mahla Moridi Farimani, Kim Pöyhönen
How Landau caterpillars turn into Hofstadter butterflies by tuning the periodic potential strength
Ivo A. Gabrovski, Louk Rademaker
Device characterization of Si/SiGe double quantum dots using exchange oscillations in Earth's magnetic field
Holly G. Stemp, Harry Hanlim Kang, Chih Hwan Yang et al.
Interfacial Spin-to-Charge Conversion in Sputtered MoTe2 Heterostructures Probed by Spin Pumping and Spin-Torque Ferromagnetic Resonance
J. L. Costa, E. Santos, E. L. T. França et al.
Breakdown of Charge-Conjugation Symmetry of Disclinations in 2D Crystals
Ruslan Yamaletdinov, Mikhail I. Katsnelson, Oleg V. Yazyev