Properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment

The effect of phosphoric acid treatment on the physical-chemical properties and catalytic activity of the niobium-doped silica-titania bifunctional catalyst was investigated. As part of the synthesis procedure to produce xPO4−/Nb/TiO2-SiO2, different concentrations of phosphoric acid (H3PO4) were us...

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Main Authors: Lee, Siew Ling, Mohd. Ekhsan, Jamilah, Ling, Chui Min
Format: Article
Language:English
Published: Research Center of Inorganic Materials and Coordination Complexes, FMIPA Universitas Sriwijaya 2022
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Online Access:http://eprints.utm.my/id/eprint/98798/1/LeeSiewLing2022_PropertiesandBifunctionalCatalyticActivity.pdf
http://eprints.utm.my/id/eprint/98798/
http://dx.doi.org/10.26554/sti.2022.7.4.455-460
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.987982023-02-02T08:58:28Z http://eprints.utm.my/id/eprint/98798/ Properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment Lee, Siew Ling Mohd. Ekhsan, Jamilah Ling, Chui Min QD Chemistry The effect of phosphoric acid treatment on the physical-chemical properties and catalytic activity of the niobium-doped silica-titania bifunctional catalyst was investigated. As part of the synthesis procedure to produce xPO4−/Nb/TiO2-SiO2, different concentrations of phosphoric acid (H3PO4) were used (x= 0, 0.05, 0.10, 0.15, 0.20, 0.25 M). As shown by XRD analysis, the samples synthesized using 0–0.20 M H3PO4 were in amorphous form, as featureless diffractograms were obtained, indicating the PO4− groups were dispersed homogeneously on the surface of Nb doped SiO2-TiO2 . Due to the increased concentration of acid, other compounds were formed in the samples by reactions between PO4− and Nb and/or Ti. Additionally, UV-Vis DRS results indicated that the presence of the PO4− group accelerated the transformation of hydrated tetrahedral Ti species into isolated tetrahedral Ti species. An experimental investigation of the catalytic performance of the catalyst was conducted using 1,2-epoxyoctane as an oxidant for the epoxidation of 1-octene to 1,2-octanediol. It has been demonstrated that H3PO4 treatment was essential for oxidative and acidity active site formation. The current research findings strongly suggested that Nb-doped TiO2-SiO2 treated with 0.2 M H3PO4 was the most effective bifunctional catalyst in generating 1,2-octanediol. Research Center of Inorganic Materials and Coordination Complexes, FMIPA Universitas Sriwijaya 2022 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/98798/1/LeeSiewLing2022_PropertiesandBifunctionalCatalyticActivity.pdf Lee, Siew Ling and Mohd. Ekhsan, Jamilah and Ling, Chui Min (2022) Properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment. Science and Technology Indonesia, 7 (4). pp. 455-460. ISSN 2580-4405 http://dx.doi.org/10.26554/sti.2022.7.4.455-460 DOI: 10.26554/sti.2022.7.4.455-460
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic QD Chemistry
spellingShingle QD Chemistry
Lee, Siew Ling
Mohd. Ekhsan, Jamilah
Ling, Chui Min
Properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment
description The effect of phosphoric acid treatment on the physical-chemical properties and catalytic activity of the niobium-doped silica-titania bifunctional catalyst was investigated. As part of the synthesis procedure to produce xPO4−/Nb/TiO2-SiO2, different concentrations of phosphoric acid (H3PO4) were used (x= 0, 0.05, 0.10, 0.15, 0.20, 0.25 M). As shown by XRD analysis, the samples synthesized using 0–0.20 M H3PO4 were in amorphous form, as featureless diffractograms were obtained, indicating the PO4− groups were dispersed homogeneously on the surface of Nb doped SiO2-TiO2 . Due to the increased concentration of acid, other compounds were formed in the samples by reactions between PO4− and Nb and/or Ti. Additionally, UV-Vis DRS results indicated that the presence of the PO4− group accelerated the transformation of hydrated tetrahedral Ti species into isolated tetrahedral Ti species. An experimental investigation of the catalytic performance of the catalyst was conducted using 1,2-epoxyoctane as an oxidant for the epoxidation of 1-octene to 1,2-octanediol. It has been demonstrated that H3PO4 treatment was essential for oxidative and acidity active site formation. The current research findings strongly suggested that Nb-doped TiO2-SiO2 treated with 0.2 M H3PO4 was the most effective bifunctional catalyst in generating 1,2-octanediol.
format Article
author Lee, Siew Ling
Mohd. Ekhsan, Jamilah
Ling, Chui Min
author_facet Lee, Siew Ling
Mohd. Ekhsan, Jamilah
Ling, Chui Min
author_sort Lee, Siew Ling
title Properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment
title_short Properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment
title_full Properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment
title_fullStr Properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment
title_full_unstemmed Properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment
title_sort properties and bifunctional catalytic activity of niobium-doped silica-titania: effect of phosphoric acid treatment
publisher Research Center of Inorganic Materials and Coordination Complexes, FMIPA Universitas Sriwijaya
publishDate 2022
url http://eprints.utm.my/id/eprint/98798/1/LeeSiewLing2022_PropertiesandBifunctionalCatalyticActivity.pdf
http://eprints.utm.my/id/eprint/98798/
http://dx.doi.org/10.26554/sti.2022.7.4.455-460
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