DocumentCode :
999749
Title :
Electron transport through metal-multiwall carbon nanotube interfaces
Author :
Ngo, Quoc ; Petranovic, Dusan ; Krishnan, Shoba ; Cassell, Alan M. ; Ye, Qi ; Li, Jun ; Meyyappan, M. ; Yang, Cary Y.
Author_Institution :
Center for Nanostructures, Santa Clara Univ., CA, USA
Volume :
3
Issue :
2
fYear :
2004
fDate :
6/1/2004 12:00:00 AM
Firstpage :
311
Lastpage :
317
Abstract :
In this paper, we examine mechanisms of electron transport across the metal-carbon nanotube (CNT) interface for two different types of multiwall carbon nanotube (MWNT) architectures, horizontal or side-contacted MWNTs and vertical or end-contacted MWNTs. Horizontally aligned nanotube growth and electrical characteristics are examined with respect to their potential applications in silicon-based technologies. Recent advances in the synthesis techniques of vertical MWNTs have also enhanced the possibility for a manufacturable solution incorporating this novel material as on-chip interconnects or vias as copper interconnect feature sizes are scaled into the sub-100-nm regime. A vertical MWNT architecture is presented that may be suitable for integration into silicon-based technologies. The growth method for this architecture and its effect on electrical characteristics are examined. Through simulations, dc measurements, and comparison of our results with previous studies, we explain why high contact resistance is observed in metal-CNT-metal systems.
Keywords :
carbon nanotubes; contact resistance; copper; integrated circuit interconnections; system-on-chip; 100 nm; C; Cu; contact resistance; copper interconnect; dc measurements; electrical properties; electron transport; metal-multiwall carbon nanotube interfaces; nanotube growth; on-chip interconnects; silicon-based technologies; solution incorporating; Carbon nanotubes; Chemical vapor deposition; Contact resistance; Electric variables; Electrical resistance measurement; Electrodes; Electrons; Fabrication; Nanostructures; Nanotechnology; CNT; Carbon nanotube; contact resistance; on-chip interconnect;
fLanguage :
English
Journal_Title :
Nanotechnology, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-125X
Type :
jour
DOI :
10.1109/TNANO.2004.828553
Filename :
1303528
Link To Document :
بازگشت