A Review on Synthesis and Physicochemical Properties-Photocatalytic Activity Relationships of Carbon Quantum Dots Graphitic Carbon Nitride in Reduction of Carbon Dioxide

Carbon dioxide (CO2) is a major greenhouse gas present in over half of the Earth's atmosphere. Elevated CO2 emissions in the atmosphere have become a global warming issue due to the excessive use of fossil fuels by human activities. Converting CO2 into a useful compound is crucial since CO2 exi...

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Published in:Malaysian Journal of Fundamental and Applied Sciences
Main Author: Alias S.H.; Balqis Ya’akop N.F.; Mohamed N.N.; Ahmad Tarmizi N.N.A.; Sheikh Mohd Ghazali S.A.I.; Nur H.
Format: Article
Language:English
Published: Penerbit UTM Press 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85180093043&doi=10.11113%2fmjfas.v19n6.3224&partnerID=40&md5=3366d6830ffa48b624195da64d62ab1d
id 2-s2.0-85180093043
spelling 2-s2.0-85180093043
Alias S.H.; Balqis Ya’akop N.F.; Mohamed N.N.; Ahmad Tarmizi N.N.A.; Sheikh Mohd Ghazali S.A.I.; Nur H.
A Review on Synthesis and Physicochemical Properties-Photocatalytic Activity Relationships of Carbon Quantum Dots Graphitic Carbon Nitride in Reduction of Carbon Dioxide
2023
Malaysian Journal of Fundamental and Applied Sciences
19
6
10.11113/mjfas.v19n6.3224
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85180093043&doi=10.11113%2fmjfas.v19n6.3224&partnerID=40&md5=3366d6830ffa48b624195da64d62ab1d
Carbon dioxide (CO2) is a major greenhouse gas present in over half of the Earth's atmosphere. Elevated CO2 emissions in the atmosphere have become a global warming issue due to the excessive use of fossil fuels by human activities. Converting CO2 into a useful compound is crucial since CO2 exists in the environment and must be reduced. The use of semiconductor materials in photocatalysis is the best solution to degrade and potentially convert CO2 into a useful energy source. Recently, research on graphitic carbon nitride (g-C3N4) has developed interest due to its phenomenal properties, such as effective charge separation and charge carrier lifetime, electron-hole recombination, and high surface area. CQDs/g-C3N4 has recently emerged as a novel technology due to its excellent physical and chemical properties, especially in the reduction of CO2. Thus, this review outlines the recent modification of graphitic carbon nitride (g-C3N4) by carbon quantum dots (CQDs), which include the synthesis of CQDs/gC3N4 for CO2 reduction. Lastly, the review discusses physicochemical properties-photocatalytic activity relationship of CQDs/g-C3N4 in the photocatalytic reduction of CO2. This review provides a wide range of perspectives and a guideline for designing the more effective CQDs/ g-C3N4 for photocatalytic reduction of CO2. © 2023 The Author(s).
Penerbit UTM Press
2289599X
English
Article
All Open Access
author Alias S.H.; Balqis Ya’akop N.F.; Mohamed N.N.; Ahmad Tarmizi N.N.A.; Sheikh Mohd Ghazali S.A.I.; Nur H.
spellingShingle Alias S.H.; Balqis Ya’akop N.F.; Mohamed N.N.; Ahmad Tarmizi N.N.A.; Sheikh Mohd Ghazali S.A.I.; Nur H.
A Review on Synthesis and Physicochemical Properties-Photocatalytic Activity Relationships of Carbon Quantum Dots Graphitic Carbon Nitride in Reduction of Carbon Dioxide
author_facet Alias S.H.; Balqis Ya’akop N.F.; Mohamed N.N.; Ahmad Tarmizi N.N.A.; Sheikh Mohd Ghazali S.A.I.; Nur H.
author_sort Alias S.H.; Balqis Ya’akop N.F.; Mohamed N.N.; Ahmad Tarmizi N.N.A.; Sheikh Mohd Ghazali S.A.I.; Nur H.
title A Review on Synthesis and Physicochemical Properties-Photocatalytic Activity Relationships of Carbon Quantum Dots Graphitic Carbon Nitride in Reduction of Carbon Dioxide
title_short A Review on Synthesis and Physicochemical Properties-Photocatalytic Activity Relationships of Carbon Quantum Dots Graphitic Carbon Nitride in Reduction of Carbon Dioxide
title_full A Review on Synthesis and Physicochemical Properties-Photocatalytic Activity Relationships of Carbon Quantum Dots Graphitic Carbon Nitride in Reduction of Carbon Dioxide
title_fullStr A Review on Synthesis and Physicochemical Properties-Photocatalytic Activity Relationships of Carbon Quantum Dots Graphitic Carbon Nitride in Reduction of Carbon Dioxide
title_full_unstemmed A Review on Synthesis and Physicochemical Properties-Photocatalytic Activity Relationships of Carbon Quantum Dots Graphitic Carbon Nitride in Reduction of Carbon Dioxide
title_sort A Review on Synthesis and Physicochemical Properties-Photocatalytic Activity Relationships of Carbon Quantum Dots Graphitic Carbon Nitride in Reduction of Carbon Dioxide
publishDate 2023
container_title Malaysian Journal of Fundamental and Applied Sciences
container_volume 19
container_issue 6
doi_str_mv 10.11113/mjfas.v19n6.3224
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85180093043&doi=10.11113%2fmjfas.v19n6.3224&partnerID=40&md5=3366d6830ffa48b624195da64d62ab1d
description Carbon dioxide (CO2) is a major greenhouse gas present in over half of the Earth's atmosphere. Elevated CO2 emissions in the atmosphere have become a global warming issue due to the excessive use of fossil fuels by human activities. Converting CO2 into a useful compound is crucial since CO2 exists in the environment and must be reduced. The use of semiconductor materials in photocatalysis is the best solution to degrade and potentially convert CO2 into a useful energy source. Recently, research on graphitic carbon nitride (g-C3N4) has developed interest due to its phenomenal properties, such as effective charge separation and charge carrier lifetime, electron-hole recombination, and high surface area. CQDs/g-C3N4 has recently emerged as a novel technology due to its excellent physical and chemical properties, especially in the reduction of CO2. Thus, this review outlines the recent modification of graphitic carbon nitride (g-C3N4) by carbon quantum dots (CQDs), which include the synthesis of CQDs/gC3N4 for CO2 reduction. Lastly, the review discusses physicochemical properties-photocatalytic activity relationship of CQDs/g-C3N4 in the photocatalytic reduction of CO2. This review provides a wide range of perspectives and a guideline for designing the more effective CQDs/ g-C3N4 for photocatalytic reduction of CO2. © 2023 The Author(s).
publisher Penerbit UTM Press
issn 2289599X
language English
format Article
accesstype All Open Access
record_format scopus
collection Scopus
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