A critical review on relationship of CeO2-based photocatalyst towards mechanistic degradation of organic pollutant

Nanostructured photocatalysts commonly offered opportunities to solve issues scrutinized with the environmental challenges caused by steep population growth and rapid urbanization. This photocatalyst is a controllable characteristic, which can provide humans with a clean and sustainable ecosystem. O...

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Main Authors: Fauzi, A. A., Jalil, A. A., Hassan, N. S., Aziz, F. F. A., Azami, M. S., Hussain, I., Saravanan, R., Vo, D. -V. N.
Format: Article
Published: Elsevier Ltd 2022
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Online Access:http://eprints.utm.my/103121/
http://dx.doi.org/10.1016/j.chemosphere.2021.131651
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spelling my.utm.1031212023-11-13T05:03:07Z http://eprints.utm.my/103121/ A critical review on relationship of CeO2-based photocatalyst towards mechanistic degradation of organic pollutant Fauzi, A. A. Jalil, A. A. Hassan, N. S. Aziz, F. F. A. Azami, M. S. Hussain, I. Saravanan, R. Vo, D. -V. N. TP Chemical technology Nanostructured photocatalysts commonly offered opportunities to solve issues scrutinized with the environmental challenges caused by steep population growth and rapid urbanization. This photocatalyst is a controllable characteristic, which can provide humans with a clean and sustainable ecosystem. Over the last decades, one of the current thriving research focuses on visible-light-driven CeO2-based photocatalysts due to their superior characteristics, including unique fluorite-type structure, rigid framework, and facile reducing oxidizing properties of cerium's tetravalent (Ce4+) and trivalent (Ce3+) valence states. Notwithstanding, owing to its inherent wide energy gap, the solar energy utilization efficiency is low, which limits its application in wastewater treatment. Numerous modifications of CeO2 have been employed to enhance photodegradation performances, such as metals and non-metals doping, adding support materials, and coupling with another semiconductor. Besides, all these doping will form a different heterojunction and show a different way of electron-hole migration. Compared to conventional heterojunction, advanced heterojunction types such as p-n heterojunction, Z–scheme, Schottky junction, and surface plasmon resonance effect exhibit superior performance for degradation owing to their excellent charge carrier separation, and the reaction occurs at a relatively higher redox potential. This review attends to providing deep insights on heterojunction mechanisms and the latest progress on photodegradation of various contaminants in wastewater using CeO2-based photocatalysts. Hence, making the CeO2 photocatalyst more foresee and promising to further development and research. Elsevier Ltd 2022 Article PeerReviewed Fauzi, A. A. and Jalil, A. A. and Hassan, N. S. and Aziz, F. F. A. and Azami, M. S. and Hussain, I. and Saravanan, R. and Vo, D. -V. N. (2022) A critical review on relationship of CeO2-based photocatalyst towards mechanistic degradation of organic pollutant. Chemosphere, 286 (NA). pp. 1-17. ISSN 0045-6535 http://dx.doi.org/10.1016/j.chemosphere.2021.131651 DOI : 10.1016/j.chemosphere.2021.131651
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/
topic TP Chemical technology
spellingShingle TP Chemical technology
Fauzi, A. A.
Jalil, A. A.
Hassan, N. S.
Aziz, F. F. A.
Azami, M. S.
Hussain, I.
Saravanan, R.
Vo, D. -V. N.
A critical review on relationship of CeO2-based photocatalyst towards mechanistic degradation of organic pollutant
description Nanostructured photocatalysts commonly offered opportunities to solve issues scrutinized with the environmental challenges caused by steep population growth and rapid urbanization. This photocatalyst is a controllable characteristic, which can provide humans with a clean and sustainable ecosystem. Over the last decades, one of the current thriving research focuses on visible-light-driven CeO2-based photocatalysts due to their superior characteristics, including unique fluorite-type structure, rigid framework, and facile reducing oxidizing properties of cerium's tetravalent (Ce4+) and trivalent (Ce3+) valence states. Notwithstanding, owing to its inherent wide energy gap, the solar energy utilization efficiency is low, which limits its application in wastewater treatment. Numerous modifications of CeO2 have been employed to enhance photodegradation performances, such as metals and non-metals doping, adding support materials, and coupling with another semiconductor. Besides, all these doping will form a different heterojunction and show a different way of electron-hole migration. Compared to conventional heterojunction, advanced heterojunction types such as p-n heterojunction, Z–scheme, Schottky junction, and surface plasmon resonance effect exhibit superior performance for degradation owing to their excellent charge carrier separation, and the reaction occurs at a relatively higher redox potential. This review attends to providing deep insights on heterojunction mechanisms and the latest progress on photodegradation of various contaminants in wastewater using CeO2-based photocatalysts. Hence, making the CeO2 photocatalyst more foresee and promising to further development and research.
format Article
author Fauzi, A. A.
Jalil, A. A.
Hassan, N. S.
Aziz, F. F. A.
Azami, M. S.
Hussain, I.
Saravanan, R.
Vo, D. -V. N.
author_facet Fauzi, A. A.
Jalil, A. A.
Hassan, N. S.
Aziz, F. F. A.
Azami, M. S.
Hussain, I.
Saravanan, R.
Vo, D. -V. N.
author_sort Fauzi, A. A.
title A critical review on relationship of CeO2-based photocatalyst towards mechanistic degradation of organic pollutant
title_short A critical review on relationship of CeO2-based photocatalyst towards mechanistic degradation of organic pollutant
title_full A critical review on relationship of CeO2-based photocatalyst towards mechanistic degradation of organic pollutant
title_fullStr A critical review on relationship of CeO2-based photocatalyst towards mechanistic degradation of organic pollutant
title_full_unstemmed A critical review on relationship of CeO2-based photocatalyst towards mechanistic degradation of organic pollutant
title_sort critical review on relationship of ceo2-based photocatalyst towards mechanistic degradation of organic pollutant
publisher Elsevier Ltd
publishDate 2022
url http://eprints.utm.my/103121/
http://dx.doi.org/10.1016/j.chemosphere.2021.131651
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score 13.211869