The fabrication methods of Metal-molecule-metal junction electrode current state-of-art
The 2nd International Malaysia-Ireland Joint Symposium on Engineering, Science and Business 2012 (IMiEJS2012) jointly organized by Universiti Malaysia Perlis and Athlone Institute of Technology in collaboration with The Ministry of Higher Education (MOHE) Malaysia, Education Malaysia and Malaysia Po...
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2013
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my.unimap-307662013-12-23T04:56:56Z The fabrication methods of Metal-molecule-metal junction electrode current state-of-art Qazi Muhammad, Humayun Uda, Hashim, Prof. Dr. qhumayun2@gmail.com uda@unimap.edu.my Metal-molecule-metal junction Electrode Mechanical breakjunction Electromigration Focused ion beam Lithography Biomolecule The 2nd International Malaysia-Ireland Joint Symposium on Engineering, Science and Business 2012 (IMiEJS2012) jointly organized by Universiti Malaysia Perlis and Athlone Institute of Technology in collaboration with The Ministry of Higher Education (MOHE) Malaysia, Education Malaysia and Malaysia Postgraduates Student Association Ireland (MyPSI), 18th - 19th June 2012 at Putra World Trade Center (PWTC), Kuala Lumpur, Malaysia. Fabrication techniques for Metal-molecule-metal junction electrode suitable to study electron tunneling through metal junctions are reviewed. The applications of current strategies such as mechanical breakjunction, electromigration, shadow mask lithography, focused ion beam deposition, chemical and electrochemical plating, electron-beam lithography, in fabricating vacant junction electrode are briefly described. For biomolecules sensing applications, the size of the junction electrode must be small enough to allow the biomolecule inserted into the junction space to connect both leads to keep the molecules in a relaxed and undistorted state. A significant advantage of using Metal-molecule-metal junction devices is that the junction can be characterized with and without the molecule in place using simple instruments. Any electrical artifacts introduced by the electrode fabrication process can be more easily deconvoluted from the intrinsic properties of the molecule 2013-12-23T04:56:56Z 2013-12-23T04:56:56Z 2012-06-18 Working Paper p. 1020 - 1029 978-967-5760-11-2 http://hdl.handle.net/123456789/30766 en Proceedings of the The 2nd International Malaysia-Ireland Joint Symposium on Engineering, Science and Business 2012 (IMiEJS2012); Universiti Malaysia Perlis (UniMAP) |
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Metal-molecule-metal junction Electrode Mechanical breakjunction Electromigration Focused ion beam Lithography Biomolecule |
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Metal-molecule-metal junction Electrode Mechanical breakjunction Electromigration Focused ion beam Lithography Biomolecule Qazi Muhammad, Humayun Uda, Hashim, Prof. Dr. The fabrication methods of Metal-molecule-metal junction electrode current state-of-art |
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The 2nd International Malaysia-Ireland Joint Symposium on Engineering, Science and Business 2012 (IMiEJS2012) jointly organized by Universiti Malaysia Perlis and Athlone Institute of Technology in collaboration with The Ministry of Higher Education (MOHE) Malaysia, Education Malaysia and Malaysia Postgraduates Student Association Ireland (MyPSI), 18th - 19th June 2012 at Putra World Trade Center (PWTC), Kuala Lumpur, Malaysia. |
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qhumayun2@gmail.com |
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qhumayun2@gmail.com Qazi Muhammad, Humayun Uda, Hashim, Prof. Dr. |
format |
Working Paper |
author |
Qazi Muhammad, Humayun Uda, Hashim, Prof. Dr. |
author_sort |
Qazi Muhammad, Humayun |
title |
The fabrication methods of Metal-molecule-metal junction electrode current state-of-art |
title_short |
The fabrication methods of Metal-molecule-metal junction electrode current state-of-art |
title_full |
The fabrication methods of Metal-molecule-metal junction electrode current state-of-art |
title_fullStr |
The fabrication methods of Metal-molecule-metal junction electrode current state-of-art |
title_full_unstemmed |
The fabrication methods of Metal-molecule-metal junction electrode current state-of-art |
title_sort |
fabrication methods of metal-molecule-metal junction electrode current state-of-art |
publisher |
Universiti Malaysia Perlis (UniMAP) |
publishDate |
2013 |
url |
http://dspace.unimap.edu.my/xmlui/handle/123456789/30766 |
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1643795661633617920 |
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13.214268 |