Double-gated isolated vertically aligned carbon nanofiber field emission and field ionization arrays

Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer Science, 2007. === Includes bibliographical references (p. 161-168). === Electron impact ionization (ElI) is used extensively in mass spectrometry for gas-phase analytes. Due to the significant amoun...

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Main Author: Chen, Liang-Yu, 1979-
Other Authors: Akintunde Ibitayo (Tayo) Akinwande.
Format: Others
Language:English
Published: Massachusetts Institute of Technology 2008
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Online Access:http://hdl.handle.net/1721.1/40492
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spelling ndltd-MIT-oai-dspace.mit.edu-1721.1-404922019-05-02T15:37:22Z Double-gated isolated vertically aligned carbon nanofiber field emission and field ionization arrays Chen, Liang-Yu, 1979- Akintunde Ibitayo (Tayo) Akinwande. Massachusetts Institute of Technology. Dept. of Electrical Engineering and Computer Science. Massachusetts Institute of Technology. Dept. of Electrical Engineering and Computer Science. Electrical Engineering and Computer Science. Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer Science, 2007. Includes bibliographical references (p. 161-168). Electron impact ionization (ElI) is used extensively in mass spectrometry for gas-phase analytes. Due to the significant amount of fragmentation generated by ElI, the spectrum is usually very noisy. In addition, the thermionic emission electron source used in ElI has a slow response time and consumes large amount of power. To address these two issues, double-gated vertically aligned carbon nanofiber (VACNF) field emission and field ionization arrays have been developed. These arrays were characterized as field ionizers, which could produce molecular ions without severe fragmentation; and as field emitters, which act as an electron source with a fast response time and consume less power than using thermionic emission. Self-aligned double-gated isolated VACNF arrays, which were fabricated using a photoresist-based planarization process, are reported. These arrays were designed such that the tip electric field is maximized and the shielding effect from the neighboring tips is minimized while the device is capable of handling large voltages during field emission and field ionization. Two types of arrays were fabricated: (1) CNFs with tips in-plane with the gate and (2) CNFs with tips 0.9tm below the gate. (cont.) These arrays were characterized as a field emitter and a low field emission turn-on voltage of 24V is reported. These arrays were used as electron sources for ElI at pressures ranging from 5x10-6 to lx10-3 Torr. The ion current is linearly related to the product of the electron current and the ambient pressure. Thus, the device could be used as a gas pressure sensor in vacuum. Field ionization experiments were also conducted with double-gated VACNF arrays. The field ionization turn-on voltage was reduced from about 10kV, typical of ungated ionizers, to 350V. by Laing-Yu Chen. Ph.D. 2008-02-27T22:31:52Z 2008-02-27T22:31:52Z 2007 2007 Thesis http://hdl.handle.net/1721.1/40492 191805293 eng M.I.T. theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. See provided URL for inquiries about permission. http://dspace.mit.edu/handle/1721.1/7582 168 p. application/pdf Massachusetts Institute of Technology
collection NDLTD
language English
format Others
sources NDLTD
topic Electrical Engineering and Computer Science.
spellingShingle Electrical Engineering and Computer Science.
Chen, Liang-Yu, 1979-
Double-gated isolated vertically aligned carbon nanofiber field emission and field ionization arrays
description Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer Science, 2007. === Includes bibliographical references (p. 161-168). === Electron impact ionization (ElI) is used extensively in mass spectrometry for gas-phase analytes. Due to the significant amount of fragmentation generated by ElI, the spectrum is usually very noisy. In addition, the thermionic emission electron source used in ElI has a slow response time and consumes large amount of power. To address these two issues, double-gated vertically aligned carbon nanofiber (VACNF) field emission and field ionization arrays have been developed. These arrays were characterized as field ionizers, which could produce molecular ions without severe fragmentation; and as field emitters, which act as an electron source with a fast response time and consume less power than using thermionic emission. Self-aligned double-gated isolated VACNF arrays, which were fabricated using a photoresist-based planarization process, are reported. These arrays were designed such that the tip electric field is maximized and the shielding effect from the neighboring tips is minimized while the device is capable of handling large voltages during field emission and field ionization. Two types of arrays were fabricated: (1) CNFs with tips in-plane with the gate and (2) CNFs with tips 0.9tm below the gate. === (cont.) These arrays were characterized as a field emitter and a low field emission turn-on voltage of 24V is reported. These arrays were used as electron sources for ElI at pressures ranging from 5x10-6 to lx10-3 Torr. The ion current is linearly related to the product of the electron current and the ambient pressure. Thus, the device could be used as a gas pressure sensor in vacuum. Field ionization experiments were also conducted with double-gated VACNF arrays. The field ionization turn-on voltage was reduced from about 10kV, typical of ungated ionizers, to 350V. === by Laing-Yu Chen. === Ph.D.
author2 Akintunde Ibitayo (Tayo) Akinwande.
author_facet Akintunde Ibitayo (Tayo) Akinwande.
Chen, Liang-Yu, 1979-
author Chen, Liang-Yu, 1979-
author_sort Chen, Liang-Yu, 1979-
title Double-gated isolated vertically aligned carbon nanofiber field emission and field ionization arrays
title_short Double-gated isolated vertically aligned carbon nanofiber field emission and field ionization arrays
title_full Double-gated isolated vertically aligned carbon nanofiber field emission and field ionization arrays
title_fullStr Double-gated isolated vertically aligned carbon nanofiber field emission and field ionization arrays
title_full_unstemmed Double-gated isolated vertically aligned carbon nanofiber field emission and field ionization arrays
title_sort double-gated isolated vertically aligned carbon nanofiber field emission and field ionization arrays
publisher Massachusetts Institute of Technology
publishDate 2008
url http://hdl.handle.net/1721.1/40492
work_keys_str_mv AT chenliangyu1979 doublegatedisolatedverticallyalignedcarbonnanofiberfieldemissionandfieldionizationarrays
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