Carbon nanotube amorphous carbon composites
This project focuses mainly on the field emission properties of multi-walled carbon nanotube (MWNT) films coated with a thin layer of diamond like amorphous carbon (DLC) film. The vibrational motions of the MWNT samples, DLC coated MWNTs and annealed samples were characterized using Raman Spectrosco...
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sg-ntu-dr.10356-189972023-07-07T15:52:07Z Carbon nanotube amorphous carbon composites Li, Keke Tay Beng Kang School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Nanoelectronics This project focuses mainly on the field emission properties of multi-walled carbon nanotube (MWNT) films coated with a thin layer of diamond like amorphous carbon (DLC) film. The vibrational motions of the MWNT samples, DLC coated MWNTs and annealed samples were characterized using Raman Spectroscopy. The synthesized MWNTs have a graphite phase G-band at ~1588.64cm-1, and there are various D-peak to G-peak intensity ratios depending on the geometry of the MWNTs. The DLC coating on MWNTs were found to shift the peak away from the nano-crystalline graphite structure of MWNTs. The field emission performance of MWNT films depend on the length of the tubes, diameter and the density. The 2.25nm DLC coated MWNT film requires smaller voltage applied at the defined turn-on current than the uncoated sample. DLC coated MWNT samples also exhibit higher stability in the 1 hour lifetime test of the emission current density. Bachelor of Engineering 2009-08-28T07:39:53Z 2009-08-28T07:39:53Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/18997 en Nanyang Technological University 65 p. application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering::Nanoelectronics Li, Keke Carbon nanotube amorphous carbon composites |
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This project focuses mainly on the field emission properties of multi-walled carbon nanotube (MWNT) films coated with a thin layer of diamond like amorphous carbon (DLC) film. The vibrational motions of the MWNT samples, DLC coated MWNTs and annealed samples were characterized using Raman Spectroscopy. The synthesized MWNTs have a graphite phase G-band at ~1588.64cm-1, and there are various D-peak to G-peak intensity ratios depending on the geometry of the MWNTs. The DLC coating on MWNTs were found to shift the peak away from the nano-crystalline graphite structure of MWNTs. The field emission performance of MWNT films depend on the length of the tubes, diameter and the density. The 2.25nm DLC coated MWNT film requires smaller voltage applied at the defined turn-on current than the uncoated sample. DLC coated MWNT samples also exhibit higher stability in the 1 hour lifetime test of the emission current density. |
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Tay Beng Kang |
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Tay Beng Kang Li, Keke |
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Final Year Project |
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Li, Keke |
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Li, Keke |
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Carbon nanotube amorphous carbon composites |
title_short |
Carbon nanotube amorphous carbon composites |
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Carbon nanotube amorphous carbon composites |
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Carbon nanotube amorphous carbon composites |
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Carbon nanotube amorphous carbon composites |
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carbon nanotube amorphous carbon composites |
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2009 |
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http://hdl.handle.net/10356/18997 |
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1772825495588569088 |