State of the art advancement in rational design of g-C3N4 photocatalyst for efficient solar fuel transformation, environmental decontamination and future perspectives

Recently, the graphite based heterogeneous photocatalysts has attained tremendous research attention in various environmental applications. Among them, the graphitic carbon nitride (g-C3N4) is categorized as a unique solar active particle with its outstanding intrinsic properties i.e., adequate band...

Full description

Bibliographic Details
Published in:International Journal of Hydrogen Energy
Main Author: Hayat A.; Shah Syed J.A.; Al-Sehemi A.G.; El-Nasser K.S.; Taha T.A.; Al-Ghamdi A.A.; Amin M.A.; Ajmal Z.; Iqbal W.; Palamanit A.; Medina D.I.; Nawawi W.I.; Sohail M.
Format: Review
Language:English
Published: Elsevier Ltd 2022
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85124581358&doi=10.1016%2fj.ijhydene.2021.11.252&partnerID=40&md5=eedb4ffb1df97fdc1986dca5a00f49e8
id 2-s2.0-85124581358
spelling 2-s2.0-85124581358
Hayat A.; Shah Syed J.A.; Al-Sehemi A.G.; El-Nasser K.S.; Taha T.A.; Al-Ghamdi A.A.; Amin M.A.; Ajmal Z.; Iqbal W.; Palamanit A.; Medina D.I.; Nawawi W.I.; Sohail M.
State of the art advancement in rational design of g-C3N4 photocatalyst for efficient solar fuel transformation, environmental decontamination and future perspectives
2022
International Journal of Hydrogen Energy
47
20
10.1016/j.ijhydene.2021.11.252
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85124581358&doi=10.1016%2fj.ijhydene.2021.11.252&partnerID=40&md5=eedb4ffb1df97fdc1986dca5a00f49e8
Recently, the graphite based heterogeneous photocatalysts has attained tremendous research attention in various environmental applications. Among them, the graphitic carbon nitride (g-C3N4) is categorized as a unique solar active particle with its outstanding intrinsic properties i.e., adequate band configuration, excellent light absorptivity and thermo-physical durability, which make it highly useful and reliable for revenue transformation and ecological concerns. Considering the intrinsic potential of g-C3N4 in photocatalysis, so far, no report has been done in literature for its extraordinary configuration, morphological characteristics and perspective tuning for said applications. To overcome this research gap, our primary emphasis of this review regarding photocatalysis is to provide layout as well as the advancement of visible-light-fueled materials as highly stabilized and extremely effective ones for pragmatic implementation. Thus, this existing comprehensive assessment conducts a systematic survey over visible light driven non-metal novel g-C3N4. The major advancement of this evaluation is the fabrication of well-designed nanosized g-C3N4 photocatalysts with unique configurable frameworks and compositions. Furthermore, alternative techniques in order to customize the analogue band configuration and noticeable cultivation such as metal (cation), nonmetal (anion) doping, worthy metal activating, and alloy initiation with certain semiconductors are discussed in detail. In addition to this, g-C3N4 photocatalytic functionalities towards photocatalytic hydrogen evolution, CO2 photoreduction, biological metal ions deterioration as well as bacterial sanitization are also presented and discussed in detail. Therefore, we believe that such a pivotal compact assessment can provide a roadmap in several perspectives on the currently underway obstacles in the innovation of effective g-C3N4 catalytic design processes. Moreover, this critical assessment will ultimately serve as a useful supplement in the research area of g-C3N4 nanosized photocatalysts and for the researchers working on its key aspects in diverse range of natural, chemistry, engineering and environmental applications. © 2021 Hydrogen Energy Publications LLC
Elsevier Ltd
03603199
English
Review

author Hayat A.; Shah Syed J.A.; Al-Sehemi A.G.; El-Nasser K.S.; Taha T.A.; Al-Ghamdi A.A.; Amin M.A.; Ajmal Z.; Iqbal W.; Palamanit A.; Medina D.I.; Nawawi W.I.; Sohail M.
spellingShingle Hayat A.; Shah Syed J.A.; Al-Sehemi A.G.; El-Nasser K.S.; Taha T.A.; Al-Ghamdi A.A.; Amin M.A.; Ajmal Z.; Iqbal W.; Palamanit A.; Medina D.I.; Nawawi W.I.; Sohail M.
State of the art advancement in rational design of g-C3N4 photocatalyst for efficient solar fuel transformation, environmental decontamination and future perspectives
author_facet Hayat A.; Shah Syed J.A.; Al-Sehemi A.G.; El-Nasser K.S.; Taha T.A.; Al-Ghamdi A.A.; Amin M.A.; Ajmal Z.; Iqbal W.; Palamanit A.; Medina D.I.; Nawawi W.I.; Sohail M.
author_sort Hayat A.; Shah Syed J.A.; Al-Sehemi A.G.; El-Nasser K.S.; Taha T.A.; Al-Ghamdi A.A.; Amin M.A.; Ajmal Z.; Iqbal W.; Palamanit A.; Medina D.I.; Nawawi W.I.; Sohail M.
title State of the art advancement in rational design of g-C3N4 photocatalyst for efficient solar fuel transformation, environmental decontamination and future perspectives
title_short State of the art advancement in rational design of g-C3N4 photocatalyst for efficient solar fuel transformation, environmental decontamination and future perspectives
title_full State of the art advancement in rational design of g-C3N4 photocatalyst for efficient solar fuel transformation, environmental decontamination and future perspectives
title_fullStr State of the art advancement in rational design of g-C3N4 photocatalyst for efficient solar fuel transformation, environmental decontamination and future perspectives
title_full_unstemmed State of the art advancement in rational design of g-C3N4 photocatalyst for efficient solar fuel transformation, environmental decontamination and future perspectives
title_sort State of the art advancement in rational design of g-C3N4 photocatalyst for efficient solar fuel transformation, environmental decontamination and future perspectives
publishDate 2022
container_title International Journal of Hydrogen Energy
container_volume 47
container_issue 20
doi_str_mv 10.1016/j.ijhydene.2021.11.252
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85124581358&doi=10.1016%2fj.ijhydene.2021.11.252&partnerID=40&md5=eedb4ffb1df97fdc1986dca5a00f49e8
description Recently, the graphite based heterogeneous photocatalysts has attained tremendous research attention in various environmental applications. Among them, the graphitic carbon nitride (g-C3N4) is categorized as a unique solar active particle with its outstanding intrinsic properties i.e., adequate band configuration, excellent light absorptivity and thermo-physical durability, which make it highly useful and reliable for revenue transformation and ecological concerns. Considering the intrinsic potential of g-C3N4 in photocatalysis, so far, no report has been done in literature for its extraordinary configuration, morphological characteristics and perspective tuning for said applications. To overcome this research gap, our primary emphasis of this review regarding photocatalysis is to provide layout as well as the advancement of visible-light-fueled materials as highly stabilized and extremely effective ones for pragmatic implementation. Thus, this existing comprehensive assessment conducts a systematic survey over visible light driven non-metal novel g-C3N4. The major advancement of this evaluation is the fabrication of well-designed nanosized g-C3N4 photocatalysts with unique configurable frameworks and compositions. Furthermore, alternative techniques in order to customize the analogue band configuration and noticeable cultivation such as metal (cation), nonmetal (anion) doping, worthy metal activating, and alloy initiation with certain semiconductors are discussed in detail. In addition to this, g-C3N4 photocatalytic functionalities towards photocatalytic hydrogen evolution, CO2 photoreduction, biological metal ions deterioration as well as bacterial sanitization are also presented and discussed in detail. Therefore, we believe that such a pivotal compact assessment can provide a roadmap in several perspectives on the currently underway obstacles in the innovation of effective g-C3N4 catalytic design processes. Moreover, this critical assessment will ultimately serve as a useful supplement in the research area of g-C3N4 nanosized photocatalysts and for the researchers working on its key aspects in diverse range of natural, chemistry, engineering and environmental applications. © 2021 Hydrogen Energy Publications LLC
publisher Elsevier Ltd
issn 03603199
language English
format Review
accesstype
record_format scopus
collection Scopus
_version_ 1820775455751405568