Optical Response of Poly (1,4-Phenylene-1,2-Di (P-Phenoxyphenyl) Vinylene) Towards Oxygen Gas
This research involved the synthesis of poly (1,4-phenylene-1,2-di (p-phenoxyphenyl) vinylene), dpop-PDV from di (p-phenoxybenzoyl) benzene compound as the monomer. The potential of the produced polymer as sensing reagent for O2 detection based on fluorescence quenching was studied. Di (p-phenoxyben...
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Universitas Gadjah Mada
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doaj-a59653a947be405397946fb3ef3487e42020-11-24T22:27:31ZengUniversitas Gadjah MadaASEAN Journal on Science and Technology for Development0217-54602224-90282017-10-01211253510.29037/ajstd.8984Optical Response of Poly (1,4-Phenylene-1,2-Di (P-Phenoxyphenyl) Vinylene) Towards Oxygen GasF.S Mehamod0R Daik1M Ahmad2School of Chemical Sciences and Food Technology Faculty of Science and Technology, Universiti Kebangsaan MalaysiaSchool of Chemical Sciences and Food Technology Faculty of Science and Technology, Universiti Kebangsaan MalaysiaSchool of Chemical Sciences and Food Technology Faculty of Science and Technology, Universiti Kebangsaan MalaysiaThis research involved the synthesis of poly (1,4-phenylene-1,2-di (p-phenoxyphenyl) vinylene), dpop-PDV from di (p-phenoxybenzoyl) benzene compound as the monomer. The potential of the produced polymer as sensing reagent for O2 detection based on fluorescence quenching was studied. Di (p-phenoxybenzoyl) benzene was synthesised via the Friedel-Crafts benzoylation with terephthaloydichloride and biphenylether as starting materials and anhydrous AlCl3 as the catalyst, while the dpop-PDV was synthesized via the McMurry coupling reaction. The polymerization was carried out in THF with TiCl4 and Zn as the catalyst and reducing agent respectively. Characterization on monomer and polymer had been carried out by using FTIR, GCMS, DSC, TGA, GPC and melting point measurement. Response of the polymer towards oxygen gas was described in terms of fluorescence spectra, repeatability, reproducibility and the response curve. Results obtained showed that the fluorescence intensity decreased upon exposure to O2 gas, indicating that the polymer was responsive to the presence of the O2 gas and the sample was found regenerable by flushing the polymer solution with N2 gas.http://www.ajstd.org/index.php/ajstd/article/view/89 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
F.S Mehamod R Daik M Ahmad |
spellingShingle |
F.S Mehamod R Daik M Ahmad Optical Response of Poly (1,4-Phenylene-1,2-Di (P-Phenoxyphenyl) Vinylene) Towards Oxygen Gas ASEAN Journal on Science and Technology for Development |
author_facet |
F.S Mehamod R Daik M Ahmad |
author_sort |
F.S Mehamod |
title |
Optical Response of Poly (1,4-Phenylene-1,2-Di (P-Phenoxyphenyl) Vinylene) Towards Oxygen Gas |
title_short |
Optical Response of Poly (1,4-Phenylene-1,2-Di (P-Phenoxyphenyl) Vinylene) Towards Oxygen Gas |
title_full |
Optical Response of Poly (1,4-Phenylene-1,2-Di (P-Phenoxyphenyl) Vinylene) Towards Oxygen Gas |
title_fullStr |
Optical Response of Poly (1,4-Phenylene-1,2-Di (P-Phenoxyphenyl) Vinylene) Towards Oxygen Gas |
title_full_unstemmed |
Optical Response of Poly (1,4-Phenylene-1,2-Di (P-Phenoxyphenyl) Vinylene) Towards Oxygen Gas |
title_sort |
optical response of poly (1,4-phenylene-1,2-di (p-phenoxyphenyl) vinylene) towards oxygen gas |
publisher |
Universitas Gadjah Mada |
series |
ASEAN Journal on Science and Technology for Development |
issn |
0217-5460 2224-9028 |
publishDate |
2017-10-01 |
description |
This research involved the synthesis of poly (1,4-phenylene-1,2-di (p-phenoxyphenyl) vinylene), dpop-PDV from di (p-phenoxybenzoyl) benzene compound as the monomer. The potential of the produced polymer as sensing reagent for O2 detection based on fluorescence quenching was studied. Di (p-phenoxybenzoyl) benzene was synthesised via the Friedel-Crafts benzoylation
with terephthaloydichloride and biphenylether as starting materials and anhydrous AlCl3 as the catalyst, while the dpop-PDV was synthesized via the McMurry coupling reaction. The polymerization was carried out in THF with TiCl4 and Zn as the catalyst and reducing agent respectively. Characterization on monomer and polymer had been carried out by using FTIR, GCMS, DSC, TGA, GPC and melting point measurement. Response of the polymer towards oxygen gas was described in terms of fluorescence spectra, repeatability, reproducibility and the response curve. Results obtained showed that the fluorescence intensity decreased upon exposure to O2 gas, indicating that the polymer was responsive to the presence of the O2 gas and the sample was found regenerable by flushing the polymer solution with N2 gas. |
url |
http://www.ajstd.org/index.php/ajstd/article/view/89 |
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