Synergetic effect of bismuth vanadate over copolymerized carbon nitride composites for highly efficient photocatalytic H2 and O2 generation
The development of copolymerized carbon nitride (CN)-based photocatalysts may support advances in photocatalytic overall water splitting. However, the recombination of charge carriers is the main bottleneck that reduces its overall photocatalytic activity. To overcome this problem, the construction...
Published in: | Journal of Colloid and Interface Science |
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Academic Press Inc.
2022
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2-s2.0-85134654990 Hayat A.; Sohail M.; Taha T.A.; Kumar Baburao Mane S.; Al-Sehemi A.G.; Al-Ghamdi A.A.; Nawawi W.I.; Palamanit A.; Amin M.A.; Fallatah A.M.; Ajmal Z.; Ali H.; Ullah Khan W.; Wajid Shah M.; Khan J.; Wageh S. Synergetic effect of bismuth vanadate over copolymerized carbon nitride composites for highly efficient photocatalytic H2 and O2 generation 2022 Journal of Colloid and Interface Science 627 10.1016/j.jcis.2022.07.012 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85134654990&doi=10.1016%2fj.jcis.2022.07.012&partnerID=40&md5=b0938c5eaf327052dcaeadfb1fe7bd21 The development of copolymerized carbon nitride (CN)-based photocatalysts may support advances in photocatalytic overall water splitting. However, the recombination of charge carriers is the main bottleneck that reduces its overall photocatalytic activity. To overcome this problem, the construction of heterojunction technology has emerged as an effective approach to reduce the charge carrier recombination, thereby improving charge separation and transport efficiency. In this work, an innovative heterojunction was prepared between Quinolinic acid (QA) modified CN (CN-QAx) and novel nanorod-shaped bismuth vanadate (BiVO4) (BiVO4/CN-QAx) for overall water splitting through a simple in-situ solvent evaporation technique. The obtained results show that the synthesized samples have efficient and improved activities for releasing H2 (862.1 μmol/h) and O2 (31.58 μmol/h) under visible light irradiation. Furthermore, an exceptional apparent quantum yield (AQY) of 64.52 % has been recorded for BiVO4/CN-QA7.0 at 420 nm, which might be due to the substantial isolation of photoinduced charge carriers. Therefore, this work opens up a new channel toward efficient CN-based photocatalysts in the sustainable energy production processes. © 2022 Elsevier Inc. Academic Press Inc. 219797 English Article |
author |
Hayat A.; Sohail M.; Taha T.A.; Kumar Baburao Mane S.; Al-Sehemi A.G.; Al-Ghamdi A.A.; Nawawi W.I.; Palamanit A.; Amin M.A.; Fallatah A.M.; Ajmal Z.; Ali H.; Ullah Khan W.; Wajid Shah M.; Khan J.; Wageh S. |
spellingShingle |
Hayat A.; Sohail M.; Taha T.A.; Kumar Baburao Mane S.; Al-Sehemi A.G.; Al-Ghamdi A.A.; Nawawi W.I.; Palamanit A.; Amin M.A.; Fallatah A.M.; Ajmal Z.; Ali H.; Ullah Khan W.; Wajid Shah M.; Khan J.; Wageh S. Synergetic effect of bismuth vanadate over copolymerized carbon nitride composites for highly efficient photocatalytic H2 and O2 generation |
author_facet |
Hayat A.; Sohail M.; Taha T.A.; Kumar Baburao Mane S.; Al-Sehemi A.G.; Al-Ghamdi A.A.; Nawawi W.I.; Palamanit A.; Amin M.A.; Fallatah A.M.; Ajmal Z.; Ali H.; Ullah Khan W.; Wajid Shah M.; Khan J.; Wageh S. |
author_sort |
Hayat A.; Sohail M.; Taha T.A.; Kumar Baburao Mane S.; Al-Sehemi A.G.; Al-Ghamdi A.A.; Nawawi W.I.; Palamanit A.; Amin M.A.; Fallatah A.M.; Ajmal Z.; Ali H.; Ullah Khan W.; Wajid Shah M.; Khan J.; Wageh S. |
title |
Synergetic effect of bismuth vanadate over copolymerized carbon nitride composites for highly efficient photocatalytic H2 and O2 generation |
title_short |
Synergetic effect of bismuth vanadate over copolymerized carbon nitride composites for highly efficient photocatalytic H2 and O2 generation |
title_full |
Synergetic effect of bismuth vanadate over copolymerized carbon nitride composites for highly efficient photocatalytic H2 and O2 generation |
title_fullStr |
Synergetic effect of bismuth vanadate over copolymerized carbon nitride composites for highly efficient photocatalytic H2 and O2 generation |
title_full_unstemmed |
Synergetic effect of bismuth vanadate over copolymerized carbon nitride composites for highly efficient photocatalytic H2 and O2 generation |
title_sort |
Synergetic effect of bismuth vanadate over copolymerized carbon nitride composites for highly efficient photocatalytic H2 and O2 generation |
publishDate |
2022 |
container_title |
Journal of Colloid and Interface Science |
container_volume |
627 |
container_issue |
|
doi_str_mv |
10.1016/j.jcis.2022.07.012 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85134654990&doi=10.1016%2fj.jcis.2022.07.012&partnerID=40&md5=b0938c5eaf327052dcaeadfb1fe7bd21 |
description |
The development of copolymerized carbon nitride (CN)-based photocatalysts may support advances in photocatalytic overall water splitting. However, the recombination of charge carriers is the main bottleneck that reduces its overall photocatalytic activity. To overcome this problem, the construction of heterojunction technology has emerged as an effective approach to reduce the charge carrier recombination, thereby improving charge separation and transport efficiency. In this work, an innovative heterojunction was prepared between Quinolinic acid (QA) modified CN (CN-QAx) and novel nanorod-shaped bismuth vanadate (BiVO4) (BiVO4/CN-QAx) for overall water splitting through a simple in-situ solvent evaporation technique. The obtained results show that the synthesized samples have efficient and improved activities for releasing H2 (862.1 μmol/h) and O2 (31.58 μmol/h) under visible light irradiation. Furthermore, an exceptional apparent quantum yield (AQY) of 64.52 % has been recorded for BiVO4/CN-QA7.0 at 420 nm, which might be due to the substantial isolation of photoinduced charge carriers. Therefore, this work opens up a new channel toward efficient CN-based photocatalysts in the sustainable energy production processes. © 2022 Elsevier Inc. |
publisher |
Academic Press Inc. |
issn |
219797 |
language |
English |
format |
Article |
accesstype |
|
record_format |
scopus |
collection |
Scopus |
_version_ |
1818940560303456256 |