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The effects of cesium deposition and gas exposure on the field emission properties of single wall and multiwall nanotubes

Posted on:2003-09-15Degree:Ph.DType:Dissertation
University:University of North TexasCandidate:Wadhawan, AtulFull Text:PDF
GTID:1461390011986033Subject:Physics
Abstract/Summary:
The effects of Cs deposition on the field emission (FE) properties of single-walled carbon nanotube (SWNT) bundles were studied. In addition, a comparative study was made on the effects of O2, Ar and H 2 gases on the field emission properties of SWNT bundles and multiwall carbon nanotubes (MWNTs).;We observed that Cs deposition decreases the turn-on field for FE by a factor of 2.1--2.9 and increases the FE current by 6 orders of magnitude. After Cs deposition, the FE current versus voltage (I-V) curves showed non-Fowler-Nordheim behavior at large currents consistent with tunneling from adsorbate states. At lower currents, the ratio of the slope of the FE I-V curves before and after Cs deposition was approximately 2.1. Exposure to N2 does not decrease the FE current, while exposure to O2 decreases the FE current. Our results show that cesiated SWNT bundles have great potential as economical and reliable vacuum electron sources.;We find that H2 and Ar gases do not significantly affect the FE properties of SWNTs or MWNTs. O2 temporarily reduces the FE current and increases the turn-on voltage of SWNTs. Full recovery of these properties occurred after operation in UHV. The higher operating voltages in an O2 environment caused a permanent decrease of FE current and increase in turn-on field of MWNTs. The ratios of the slopes before and after O2 exposure were approximately 1.04 and 0.82 for SWNTs and MWNTs, respectively. SWNTs compared to MWNTs would appear to make more economical and reliable vacuum electron sources.
Keywords/Search Tags:Field emission, Deposition, FE current, SWNT, Effects, Exposure, Mwnts, Swnts
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