Utilization of polydiacetylene/zinc oxide nanocomposites to detect and differentiate organic bases in various media
© 2016 The Korean Society of Industrial and Engineering Chemistry Polydiacetylene/zinc oxide (PDA/ZnO) nanocomposites are demonstrated as colorimetric sensors for organic bases. Influence of stimuli structure on the color-transition behaviors is investigated. Addition of methylamine, ethylamine, but...
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th-mahidol.421762019-03-14T15:03:12Z Utilization of polydiacetylene/zinc oxide nanocomposites to detect and differentiate organic bases in various media Amornsak Chanakul Rakchart Traiphol Nisanart Traiphol Chulalongkorn University Naresuan University Mahidol University Chemical Engineering © 2016 The Korean Society of Industrial and Engineering Chemistry Polydiacetylene/zinc oxide (PDA/ZnO) nanocomposites are demonstrated as colorimetric sensors for organic bases. Influence of stimuli structure on the color-transition behaviors is investigated. Addition of methylamine, ethylamine, butylamine and pentylamine into pure PDAs with different alkyl chain length induces blue-to-red transition at the same concentration. Interestingly, for PDA/ZnO, it shows an ability to differentiate these alkylamines. The detecting concentration and the ability to differentiate the alkylamines can be controlled by adjusting the alkyl chain length of PDA/ZnO. Moreover, PDA/ZnO-embedded paper is successfully fabricated and used to detect alkylamines in different media. Results extend the utilization of PDA-based materials in sensing technologies. 2018-12-21T07:06:16Z 2019-03-14T08:03:12Z 2018-12-21T07:06:16Z 2019-03-14T08:03:12Z 2017-01-25 Article Journal of Industrial and Engineering Chemistry. Vol.45, (2017), 215-222 10.1016/j.jiec.2016.09.025 22345957 1226086X 2-s2.0-84992146624 https://repository.li.mahidol.ac.th/handle/123456789/42176 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84992146624&origin=inward |
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Chemical Engineering Amornsak Chanakul Rakchart Traiphol Nisanart Traiphol Utilization of polydiacetylene/zinc oxide nanocomposites to detect and differentiate organic bases in various media |
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© 2016 The Korean Society of Industrial and Engineering Chemistry Polydiacetylene/zinc oxide (PDA/ZnO) nanocomposites are demonstrated as colorimetric sensors for organic bases. Influence of stimuli structure on the color-transition behaviors is investigated. Addition of methylamine, ethylamine, butylamine and pentylamine into pure PDAs with different alkyl chain length induces blue-to-red transition at the same concentration. Interestingly, for PDA/ZnO, it shows an ability to differentiate these alkylamines. The detecting concentration and the ability to differentiate the alkylamines can be controlled by adjusting the alkyl chain length of PDA/ZnO. Moreover, PDA/ZnO-embedded paper is successfully fabricated and used to detect alkylamines in different media. Results extend the utilization of PDA-based materials in sensing technologies. |
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Chulalongkorn University |
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Chulalongkorn University Amornsak Chanakul Rakchart Traiphol Nisanart Traiphol |
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Article |
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Amornsak Chanakul Rakchart Traiphol Nisanart Traiphol |
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Amornsak Chanakul |
title |
Utilization of polydiacetylene/zinc oxide nanocomposites to detect and differentiate organic bases in various media |
title_short |
Utilization of polydiacetylene/zinc oxide nanocomposites to detect and differentiate organic bases in various media |
title_full |
Utilization of polydiacetylene/zinc oxide nanocomposites to detect and differentiate organic bases in various media |
title_fullStr |
Utilization of polydiacetylene/zinc oxide nanocomposites to detect and differentiate organic bases in various media |
title_full_unstemmed |
Utilization of polydiacetylene/zinc oxide nanocomposites to detect and differentiate organic bases in various media |
title_sort |
utilization of polydiacetylene/zinc oxide nanocomposites to detect and differentiate organic bases in various media |
publishDate |
2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/42176 |
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1763488362327441408 |