Comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material

Two organometallic compounds known as (E)-1-ferrocenyl-(3-fluorophenyl)prop-2-en-1one (Fc1) and (E)-1-ferrocenyl-(3-fluoro-4-methoxyphenyl)prop-2-en-1-one (Fc2) are designed and synthesized for application in dye-sensitized solar cell (DSSC) based on a donor-π-acceptor (D-π-A) architecture. By strat...

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Main Authors: Anizaim, Ainizatul Husna, Zainuri, Dian Alwani, Zaini, Muhamad Fikri, Abdul Razak, Ibrahim, Bakhtiar, Hazri, Arshad, Suhana
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Published: Public Library of Science 2020
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Online Access:http://eprints.utm.my/id/eprint/91514/
http://dx.doi.org/10.1371/journal.pone.0241113
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spelling my.utm.915142021-06-30T12:19:08Z http://eprints.utm.my/id/eprint/91514/ Comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material Anizaim, Ainizatul Husna Zainuri, Dian Alwani Zaini, Muhamad Fikri Abdul Razak, Ibrahim Bakhtiar, Hazri Arshad, Suhana QC Physics Two organometallic compounds known as (E)-1-ferrocenyl-(3-fluorophenyl)prop-2-en-1one (Fc1) and (E)-1-ferrocenyl-(3-fluoro-4-methoxyphenyl)prop-2-en-1-one (Fc2) are designed and synthesized for application in dye-sensitized solar cell (DSSC) based on a donor-π-acceptor (D-π-A) architecture. By strategically introducing a methoxy group into the acceptor side of the compound, Fc2 which has adopted a D-π-A-AD structure are compared with the basic D-π-A structure of Fc1. Both compounds were characterized by utilizing the IR, NMR and UV-Vis methods. Target compounds were further investigated by X-ray analysis and studied computationally using Density Functional Theory (DFT) and Time-Dependent DFT (TD-DFT) approaches to explore their potential performances in DSSCs. An additional methoxy group has been proven in enhancing intramolecular charge transfer (ICT) by improving the planarity of Fc2 backbone. This good electronic communication leads to higher HOMO energy level, larger dipole moment and better short-circuit current density (Jsc) values. Eventually, the presence of methoxy group in Fc2 has improved the conversion efficiency as in comparison to Fc1 under the same conditions. Public Library of Science 2020-11 Article PeerReviewed Anizaim, Ainizatul Husna and Zainuri, Dian Alwani and Zaini, Muhamad Fikri and Abdul Razak, Ibrahim and Bakhtiar, Hazri and Arshad, Suhana (2020) Comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material. PLoS ONE, 15 (11). e0241113-e0241113. ISSN 1932-6203 http://dx.doi.org/10.1371/journal.pone.0241113
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 QC Physics
spellingShingle QC Physics
Anizaim, Ainizatul Husna
Zainuri, Dian Alwani
Zaini, Muhamad Fikri
Abdul Razak, Ibrahim
Bakhtiar, Hazri
Arshad, Suhana
Comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material
description Two organometallic compounds known as (E)-1-ferrocenyl-(3-fluorophenyl)prop-2-en-1one (Fc1) and (E)-1-ferrocenyl-(3-fluoro-4-methoxyphenyl)prop-2-en-1-one (Fc2) are designed and synthesized for application in dye-sensitized solar cell (DSSC) based on a donor-π-acceptor (D-π-A) architecture. By strategically introducing a methoxy group into the acceptor side of the compound, Fc2 which has adopted a D-π-A-AD structure are compared with the basic D-π-A structure of Fc1. Both compounds were characterized by utilizing the IR, NMR and UV-Vis methods. Target compounds were further investigated by X-ray analysis and studied computationally using Density Functional Theory (DFT) and Time-Dependent DFT (TD-DFT) approaches to explore their potential performances in DSSCs. An additional methoxy group has been proven in enhancing intramolecular charge transfer (ICT) by improving the planarity of Fc2 backbone. This good electronic communication leads to higher HOMO energy level, larger dipole moment and better short-circuit current density (Jsc) values. Eventually, the presence of methoxy group in Fc2 has improved the conversion efficiency as in comparison to Fc1 under the same conditions.
format Article
author Anizaim, Ainizatul Husna
Zainuri, Dian Alwani
Zaini, Muhamad Fikri
Abdul Razak, Ibrahim
Bakhtiar, Hazri
Arshad, Suhana
author_facet Anizaim, Ainizatul Husna
Zainuri, Dian Alwani
Zaini, Muhamad Fikri
Abdul Razak, Ibrahim
Bakhtiar, Hazri
Arshad, Suhana
author_sort Anizaim, Ainizatul Husna
title Comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material
title_short Comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material
title_full Comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material
title_fullStr Comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material
title_full_unstemmed Comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material
title_sort comparative analyses of new donor-π-acceptor ferrocenyl-chalcones containing fluoro and methoxy-fluoro acceptor units as synthesized dyes for organic solar cell material
publisher Public Library of Science
publishDate 2020
url http://eprints.utm.my/id/eprint/91514/
http://dx.doi.org/10.1371/journal.pone.0241113
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