Systematic Study of calcination temperature on photocatalytic activity of luminescent copper(I) pyrazolate complex/titanium oxide composites

Columnar assembly of luminescent 3,5-dimethyl pyrazolate complexes/titanium oxide composites with different metal ions has shown significant improvement in its photocatalytic activity for the removal and degradation of 2, 4-dichlorophenoxyacetic acid (2,4-D). Since photocatalytic activity of semicon...

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Main Authors: Sabran, Nurul Husna, Yuliati, Leny, Siew, Ling Lee, Lintang, Hendrik Oktendy
Format: Article
Language:English
Published: Indonesian Chemistry Society 2019
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Online Access:http://eprints.utm.my/88033/13/NurulHusnaSabran2019_SystematicStudyofCalcinationTemperature.pdf
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author Sabran, Nurul Husna
Yuliati, Leny
Siew, Ling Lee
Lintang, Hendrik Oktendy
author_facet Sabran, Nurul Husna
Yuliati, Leny
Siew, Ling Lee
Lintang, Hendrik Oktendy
author_sort Sabran, Nurul Husna
collection ePrints
description Columnar assembly of luminescent 3,5-dimethyl pyrazolate complexes/titanium oxide composites with different metal ions has shown significant improvement in its photocatalytic activity for the removal and degradation of 2, 4-dichlorophenoxyacetic acid (2,4-D). Since photocatalytic activity of semiconductor titanium oxide (TiO2) with an anatase phase can be improved by calcination temperature, we report the effect of heat treatments on the preparation of copper(I) 3,5-dimethyl pyrazolate complex/titanium oxide composite ([Cu3Pz3]/TiO2) for the removal and degradation of 2,4-D. Photocatalyst composites [Cu3Pz3]/TiO2 were successfully prepared using an impregnation method with different calcination temperature at 373, 473 and 573 K. Although, the activity of photocatalyst composites [Cu3Pz3]/TiO2 was significantly improved with increasing of calcination temperature on pure TiO2, it was slightly reduced with an increase of calcined temperature to 473 and 573 K. These results showed that [Cu3Pz3]/TiO2 was unstable at high temperature due to the decomposition of molecular structure of [Cu3Pz3] during the preparation of the photocatalyst. Hence, suitable calcination temperature is an important parameter to increase photocatalytic activity of photocatalyst composites [Cu3Pz3]/TiO2.
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spelling utm.eprints-880332020-12-15T00:11:58Z http://eprints.utm.my/88033/ Systematic Study of calcination temperature on photocatalytic activity of luminescent copper(I) pyrazolate complex/titanium oxide composites Sabran, Nurul Husna Yuliati, Leny Siew, Ling Lee Lintang, Hendrik Oktendy QD Chemistry Columnar assembly of luminescent 3,5-dimethyl pyrazolate complexes/titanium oxide composites with different metal ions has shown significant improvement in its photocatalytic activity for the removal and degradation of 2, 4-dichlorophenoxyacetic acid (2,4-D). Since photocatalytic activity of semiconductor titanium oxide (TiO2) with an anatase phase can be improved by calcination temperature, we report the effect of heat treatments on the preparation of copper(I) 3,5-dimethyl pyrazolate complex/titanium oxide composite ([Cu3Pz3]/TiO2) for the removal and degradation of 2,4-D. Photocatalyst composites [Cu3Pz3]/TiO2 were successfully prepared using an impregnation method with different calcination temperature at 373, 473 and 573 K. Although, the activity of photocatalyst composites [Cu3Pz3]/TiO2 was significantly improved with increasing of calcination temperature on pure TiO2, it was slightly reduced with an increase of calcined temperature to 473 and 573 K. These results showed that [Cu3Pz3]/TiO2 was unstable at high temperature due to the decomposition of molecular structure of [Cu3Pz3] during the preparation of the photocatalyst. Hence, suitable calcination temperature is an important parameter to increase photocatalytic activity of photocatalyst composites [Cu3Pz3]/TiO2. Indonesian Chemistry Society 2019 Article PeerReviewed application/pdf en http://eprints.utm.my/88033/13/NurulHusnaSabran2019_SystematicStudyofCalcinationTemperature.pdf Sabran, Nurul Husna and Yuliati, Leny and Siew, Ling Lee and Lintang, Hendrik Oktendy (2019) Systematic Study of calcination temperature on photocatalytic activity of luminescent copper(I) pyrazolate complex/titanium oxide composites. Journal of the Indonesia Chemical Society (JICS), 2 (1). pp. 54-59. ISSN 2686-5947 https://doi.org/10.34311/jics.2019.02.1.54 DOI:10.34311/jics.2019.02.1.54
spellingShingle QD Chemistry
Sabran, Nurul Husna
Yuliati, Leny
Siew, Ling Lee
Lintang, Hendrik Oktendy
Systematic Study of calcination temperature on photocatalytic activity of luminescent copper(I) pyrazolate complex/titanium oxide composites
title Systematic Study of calcination temperature on photocatalytic activity of luminescent copper(I) pyrazolate complex/titanium oxide composites
title_full Systematic Study of calcination temperature on photocatalytic activity of luminescent copper(I) pyrazolate complex/titanium oxide composites
title_fullStr Systematic Study of calcination temperature on photocatalytic activity of luminescent copper(I) pyrazolate complex/titanium oxide composites
title_full_unstemmed Systematic Study of calcination temperature on photocatalytic activity of luminescent copper(I) pyrazolate complex/titanium oxide composites
title_short Systematic Study of calcination temperature on photocatalytic activity of luminescent copper(I) pyrazolate complex/titanium oxide composites
title_sort systematic study of calcination temperature on photocatalytic activity of luminescent copper i pyrazolate complex titanium oxide composites
topic QD Chemistry
url http://eprints.utm.my/88033/13/NurulHusnaSabran2019_SystematicStudyofCalcinationTemperature.pdf
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AT yuliatileny systematicstudyofcalcinationtemperatureonphotocatalyticactivityofluminescentcopperipyrazolatecomplextitaniumoxidecomposites
AT siewlinglee systematicstudyofcalcinationtemperatureonphotocatalyticactivityofluminescentcopperipyrazolatecomplextitaniumoxidecomposites
AT lintanghendrikoktendy systematicstudyofcalcinationtemperatureonphotocatalyticactivityofluminescentcopperipyrazolatecomplextitaniumoxidecomposites