Graphenes prepared by Hummers, Staudenmaier and Hofmann methods for analysis of TNT-based nitroaromatic explosives in seawater
The detection of TNT and related nitroaromatic compounds in seawater is of great interest. Electrochemical techniques can be applied for detection purposes since nitroaromatic compounds contain easily reducible nitro groups. In this study, we investigate the performance of thermally reduced graphe...
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sg-ntu-dr.10356-982002020-03-07T12:34:45Z Graphenes prepared by Hummers, Staudenmaier and Hofmann methods for analysis of TNT-based nitroaromatic explosives in seawater Ong, Beng Khong Poh, Hwee Ling Chua, Chun Kiang Pumera, Martin School of Physical and Mathematical Sciences The detection of TNT and related nitroaromatic compounds in seawater is of great interest. Electrochemical techniques can be applied for detection purposes since nitroaromatic compounds contain easily reducible nitro groups. In this study, we investigate the performance of thermally reduced graphenes prepared by three different oxidative methods: Hummers, Staudenmaier and Hofmann methods with consequent thermal exfoliation. The Hofmann method-based graphene was found to exhibit the highest sensitivity in detecting TNT electrochemically. Extended study on the detection of TNT in seawater using the graphene material provided significant improvements in the detection sensitivity. These findings will have profound impacts on the detection of nitroaromatic explosives in seawater. 2013-08-29T07:21:32Z 2019-12-06T19:52:01Z 2013-08-29T07:21:32Z 2019-12-06T19:52:01Z 2012 2012 Journal Article Ong, B. K., Poh, H. L., Chua, C. K.,& Pumera, M. (2012). Graphenes Prepared by Hummers, Staudenmaier and Hofmann Methods for Analysis of TNT-Based Nitroaromatic Explosives in Seawater. Electroanalysis, 24(11), 2085-2093. 1040-0397 https://hdl.handle.net/10356/98200 http://hdl.handle.net/10220/13257 10.1002/elan.201200474 en Electroanalysis |
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The detection of TNT and related nitroaromatic compounds in seawater is of great interest. Electrochemical techniques
can be applied for detection purposes since nitroaromatic compounds contain easily reducible nitro groups.
In this study, we investigate the performance of thermally reduced graphenes prepared by three different oxidative
methods: Hummers, Staudenmaier and Hofmann methods with consequent thermal exfoliation. The Hofmann
method-based graphene was found to exhibit the highest sensitivity in detecting TNT electrochemically. Extended
study on the detection of TNT in seawater using the graphene material provided significant improvements in the detection
sensitivity. These findings will have profound impacts on the detection of nitroaromatic explosives in seawater. |
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School of Physical and Mathematical Sciences |
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School of Physical and Mathematical Sciences Ong, Beng Khong Poh, Hwee Ling Chua, Chun Kiang Pumera, Martin |
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Article |
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Ong, Beng Khong Poh, Hwee Ling Chua, Chun Kiang Pumera, Martin |
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Ong, Beng Khong Poh, Hwee Ling Chua, Chun Kiang Pumera, Martin Graphenes prepared by Hummers, Staudenmaier and Hofmann methods for analysis of TNT-based nitroaromatic explosives in seawater |
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Ong, Beng Khong |
title |
Graphenes prepared by Hummers, Staudenmaier and Hofmann methods for analysis of TNT-based nitroaromatic explosives in seawater |
title_short |
Graphenes prepared by Hummers, Staudenmaier and Hofmann methods for analysis of TNT-based nitroaromatic explosives in seawater |
title_full |
Graphenes prepared by Hummers, Staudenmaier and Hofmann methods for analysis of TNT-based nitroaromatic explosives in seawater |
title_fullStr |
Graphenes prepared by Hummers, Staudenmaier and Hofmann methods for analysis of TNT-based nitroaromatic explosives in seawater |
title_full_unstemmed |
Graphenes prepared by Hummers, Staudenmaier and Hofmann methods for analysis of TNT-based nitroaromatic explosives in seawater |
title_sort |
graphenes prepared by hummers, staudenmaier and hofmann methods for analysis of tnt-based nitroaromatic explosives in seawater |
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2013 |
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https://hdl.handle.net/10356/98200 http://hdl.handle.net/10220/13257 |
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