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Field emission from a carbon nanofiber/carbon nanocone composite structure fabricated by a two-step growth process
Journal article   Peer reviewed

Field emission from a carbon nanofiber/carbon nanocone composite structure fabricated by a two-step growth process

C. J. Huang, C. M. Yeh, M. Y. Chen, J. Hwang and CHWUNG-SHAN KOU
Journal of the Electrochemical Society, Vol.153(1)
2006

Abstract

A composite structure of carbon nanofiber (CNF) and carbon nanocone (CNC) has been successfully fabricated on the Co/Al/Si(100) substrates by using microwave plasma-enhanced chemical vapor deposition. A hydrogen pretreatment is required to form Co-Al nanoparticles on the substrate at 450°C, which is essential for the subsequent CNF/CNC growth. The CNF/CNC composite structure is fabricated by a two-step process in which bundles of CNFs are formed on the as-pretreated substrate at 450°C and a CNC structure is subsequently formed at 650°C by a coalescence mechanism. Raman spectra indicate that sp 2 bonds in C=C chains play a role in connecting CNFs in each bundle during the formation of CNCs. An upward growth of CNFs on the top of CNCs occurs during coalescing CNFs. The CNF/CNC composite structure exhibits very good field emission characteristics, better than CNFs. The optimum turn-on field for the CNF/CNC structure is 2.5 V/μm, which is defined as the electric field at a current density of 10 μA/cm 2 . The current density is 4.5 mA/cm 2 at 6 V/μm. © 2005 The Electrochemical Society. All rights reserved.

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