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Investigation of superconductivity in electrochemically fabricated AuSn nanowires
Nitesh Kumar
, M. L. Tian
, J. G. Wang
, W. Watts
, J. Kindt
, T. E. Mallouk
, M. H.W. Chan
Chemistry
Biochemistry & Molecular Biology
Physics
Engineering Science and Mechanics
Materials Research Institute (MRI)
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Scopus citations
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Keyphrases
Nanowires
100%
Superconductivity
100%
AuSn
100%
Focused Ion Beam
20%
Superconducting Transition Temperature
20%
Intermetallics
20%
Intermetallic Phases
20%
Electrical Transport Measurements
20%
Deposition Parameters
20%
Nanowire Arrays
20%
Polycarbonate Membrane
20%
Electrochemical Deposition
20%
Material Science
Nanowire
100%
Superconductivity
100%
Crystalline Material
16%
Oxidation Reaction
16%
Focused Ion Beam
16%
Electrodeposition
16%
Polycarbonate
16%
Intermetallics
16%
Intermetallic Compound
16%
Chemical Engineering
Nanowires
100%
Polycarbonate
16%