Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects

One of the pioneering materials nowadays is graphene quantum dot (GQD), which possesses outstanding electrical, thermal, and mechanical properties followed by less toxicity and robust photoluminescence. These commendable properties allow GQD to be suitable enough to apply in dye-sensitized solar cel...

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Main Authors: Mahalingam, Savisha, Manap, Abreeza, Omar, Azimah, Low, Foo Wah, Afandi, N. F., Chia, Chin Hua, Abd Rahim, Nasrudin
Format: Article
Published: Pergamon-Elsevier Science Ltd 2021
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Online Access:http://eprints.um.edu.my/28713/
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spelling my.um.eprints.287132022-04-12T04:25:37Z http://eprints.um.edu.my/28713/ Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects Mahalingam, Savisha Manap, Abreeza Omar, Azimah Low, Foo Wah Afandi, N. F. Chia, Chin Hua Abd Rahim, Nasrudin Q Science (General) T Technology (General) One of the pioneering materials nowadays is graphene quantum dot (GQD), which possesses outstanding electrical, thermal, and mechanical properties followed by less toxicity and robust photoluminescence. These commendable properties allow GQD to be suitable enough to apply in dye-sensitized solar cells, incapacitating current material limits. Nevertheless, pure GQDs have many challenges in reaching their full potential in DSSC. Chemical modification and functionalization tune the physical and chemical properties, driving GQD towards high-performance DSSC. This is an ideal way of modifying GQD because the chemical adsorption of atoms or molecules prevents the destruction of the carbon network without substitutional impurities. Here, we deliver a short outline of progress in understanding GQD functionalization from theoretical/computational perspectives. This chemically modified GQD is then linked with the performance of DSSC. The review also summarizes the electron transport in GQD-DSSC to minimize back-electron transmission recombination at the photoelectrode/ electrolyte edge. The impact, outlook, and future prospects of the GQD-DSSC are included as a conclusion in this review. Pergamon-Elsevier Science Ltd 2021-07 Article PeerReviewed Mahalingam, Savisha and Manap, Abreeza and Omar, Azimah and Low, Foo Wah and Afandi, N. F. and Chia, Chin Hua and Abd Rahim, Nasrudin (2021) Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects. Renewable and Sustainable Energy Reviews, 144. ISSN 1364-0321, DOI https://doi.org/10.1016/j.rser.2021.110999 <https://doi.org/10.1016/j.rser.2021.110999>. 10.1016/j.rser.2021.110999
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic Q Science (General)
T Technology (General)
spellingShingle Q Science (General)
T Technology (General)
Mahalingam, Savisha
Manap, Abreeza
Omar, Azimah
Low, Foo Wah
Afandi, N. F.
Chia, Chin Hua
Abd Rahim, Nasrudin
Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects
description One of the pioneering materials nowadays is graphene quantum dot (GQD), which possesses outstanding electrical, thermal, and mechanical properties followed by less toxicity and robust photoluminescence. These commendable properties allow GQD to be suitable enough to apply in dye-sensitized solar cells, incapacitating current material limits. Nevertheless, pure GQDs have many challenges in reaching their full potential in DSSC. Chemical modification and functionalization tune the physical and chemical properties, driving GQD towards high-performance DSSC. This is an ideal way of modifying GQD because the chemical adsorption of atoms or molecules prevents the destruction of the carbon network without substitutional impurities. Here, we deliver a short outline of progress in understanding GQD functionalization from theoretical/computational perspectives. This chemically modified GQD is then linked with the performance of DSSC. The review also summarizes the electron transport in GQD-DSSC to minimize back-electron transmission recombination at the photoelectrode/ electrolyte edge. The impact, outlook, and future prospects of the GQD-DSSC are included as a conclusion in this review.
format Article
author Mahalingam, Savisha
Manap, Abreeza
Omar, Azimah
Low, Foo Wah
Afandi, N. F.
Chia, Chin Hua
Abd Rahim, Nasrudin
author_facet Mahalingam, Savisha
Manap, Abreeza
Omar, Azimah
Low, Foo Wah
Afandi, N. F.
Chia, Chin Hua
Abd Rahim, Nasrudin
author_sort Mahalingam, Savisha
title Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects
title_short Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects
title_full Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects
title_fullStr Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects
title_full_unstemmed Functionalized graphene quantum dots for dye-sensitized solar cell: Key challenges, recent developments and future prospects
title_sort functionalized graphene quantum dots for dye-sensitized solar cell: key challenges, recent developments and future prospects
publisher Pergamon-Elsevier Science Ltd
publishDate 2021
url http://eprints.um.edu.my/28713/
_version_ 1735409572136353792
score 13.201949