DocumentCode
1326649
Title
Carbon Nanotubes Guides for Nickel Electrical Interconnects
Author
Orlanducci, Silvia ; Tamburri, Emanuela ; Guglielmotti, Valeria ; Toschi, Francesco ; Terranova, Maria Letizia ; Lucci, Massimiliano ; Ottaviani, Ivano ; Salvato, Matteo ; Cirillo, Matteo
Author_Institution
Dipt. di Sci. e Tecnol. Chimiche, Univ. di Roma Tor Vergata, Rome, Italy
Volume
10
Issue
4
fYear
2011
fDate
7/1/2011 12:00:00 AM
Firstpage
764
Lastpage
769
Abstract
We present an innovative approach for interconnections based on aligning nanosized nickel particles along single-walled carbon nanotubes bundles. The nanotubes are first deposited to connect normal gold contacts or niobium nitride superconducting pads and a successive step in fabrication, based on an electrochemical method, enables us to “coat” the nanotubes with nickel particles. This technique, as shown by field-emission SEM analysis, generates chains of nickel particles aligned along the nanotubes connecting the contact electrodes. The temperature dependence of the resistance of the chains of Ni nanoparticles evidences the metallic nature of the obtained interconnection and shows values of the resistances up to three orders of magnitudes lower than those of the bare nanotubes bundles. The ease of the fabrication process and its reliability candidate our technique as a possible solution for interconnects applications.
Keywords
carbon nanotubes; coatings; electrical resistivity; field emission electron microscopy; gold; integrated circuit interconnections; nanocontacts; nanoparticles; nickel; niobium compounds; scanning electron microscopy; superconducting interconnections; Ni-C-Au; Ni-C-NbN; carbon nanotube guides; contact electrodes; electrical resistance; electrochemical method; field-emission SEM analysis; gold contacts; metallic nanoparticles; nanosized nickel particles; nickel electrical interconnects; niobium nitride superconducting pads; single-walled carbon nanotube bundles; Carbon nanotubes; Electrodes; Materials; Nickel; Resistance; Temperature measurement; Coatings; interconnections; nanotechnology; nickel;
fLanguage
English
Journal_Title
Nanotechnology, IEEE Transactions on
Publisher
ieee
ISSN
1536-125X
Type
jour
DOI
10.1109/TNANO.2010.2077646
Filename
5575441
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