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New 3-Ethynylaryl Coumarin-Based Dyes for DSSC Applications: Synthesis, Spectroscopic Properties, and Theoretical Calculations

A set of 3-ethynylaryl coumarin dyes with mono, bithiophenes and the fused variant, thieno [3,2-b] thiophene, as well as an alkylated benzotriazole unit were prepared and tested for dye-sensitized solar cells (DSSCs). For comparison purposes, the variation of the substitution pattern at the coumarin...

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Autores principales: Sarrato, João, Pinto, Ana Lucia, Malta, Gabriela, Röck, Eva G., Pina, João, Lima, João Carlos, Parola, A. Jorge, Branco, Paula S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156968/
https://www.ncbi.nlm.nih.gov/pubmed/34069210
http://dx.doi.org/10.3390/molecules26102934
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author Sarrato, João
Pinto, Ana Lucia
Malta, Gabriela
Röck, Eva G.
Pina, João
Lima, João Carlos
Parola, A. Jorge
Branco, Paula S.
author_facet Sarrato, João
Pinto, Ana Lucia
Malta, Gabriela
Röck, Eva G.
Pina, João
Lima, João Carlos
Parola, A. Jorge
Branco, Paula S.
author_sort Sarrato, João
collection PubMed
description A set of 3-ethynylaryl coumarin dyes with mono, bithiophenes and the fused variant, thieno [3,2-b] thiophene, as well as an alkylated benzotriazole unit were prepared and tested for dye-sensitized solar cells (DSSCs). For comparison purposes, the variation of the substitution pattern at the coumarin unit was analyzed with the natural product 6,7-dihydroxycoumarin (Esculetin) as well as 5,7-dihydroxycomarin in the case of the bithiophene dye. Crucial steps for extension of the conjugated system involved Sonogashira reaction yielding highly fluorescent molecules. Spectroscopic characterization showed that the extension of conjugation via the alkynyl bridge resulted in a strong red-shift of absorption and emission spectra (in solution) of approximately 73–79 nm and 52–89 nm, respectively, relative to 6,7-dimethoxy-4-methylcoumarin (λ(abs) = 341 nm and λ(em) = 410 nm). Theoretical density functional theory (DFT) calculations show that the Lowest Unoccupied Molecular Orbital (LUMO) is mostly centered in the cyanoacrylic anchor unit, corroborating the high intramolecular charge transfer (ICT) character of the electronic transition. Photovoltaic performance evaluation reveals that the thieno [3,2-b] thiophene unit present in dye 8 leads to the best sensitizer of the set, with a conversion efficiency (η = 2.00%), best V(OC) (367 mV) and second best J(sc) (9.28 mA·cm(−2)), surpassed only by dye 9b (J(sc) = 10.19 mA·cm(−2)). This high photocurrent value can be attributed to increased donor ability of the 5,7-dimethoxy unit when compared to the 6,7 equivalent (9b).
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spelling pubmed-81569682021-05-28 New 3-Ethynylaryl Coumarin-Based Dyes for DSSC Applications: Synthesis, Spectroscopic Properties, and Theoretical Calculations Sarrato, João Pinto, Ana Lucia Malta, Gabriela Röck, Eva G. Pina, João Lima, João Carlos Parola, A. Jorge Branco, Paula S. Molecules Article A set of 3-ethynylaryl coumarin dyes with mono, bithiophenes and the fused variant, thieno [3,2-b] thiophene, as well as an alkylated benzotriazole unit were prepared and tested for dye-sensitized solar cells (DSSCs). For comparison purposes, the variation of the substitution pattern at the coumarin unit was analyzed with the natural product 6,7-dihydroxycoumarin (Esculetin) as well as 5,7-dihydroxycomarin in the case of the bithiophene dye. Crucial steps for extension of the conjugated system involved Sonogashira reaction yielding highly fluorescent molecules. Spectroscopic characterization showed that the extension of conjugation via the alkynyl bridge resulted in a strong red-shift of absorption and emission spectra (in solution) of approximately 73–79 nm and 52–89 nm, respectively, relative to 6,7-dimethoxy-4-methylcoumarin (λ(abs) = 341 nm and λ(em) = 410 nm). Theoretical density functional theory (DFT) calculations show that the Lowest Unoccupied Molecular Orbital (LUMO) is mostly centered in the cyanoacrylic anchor unit, corroborating the high intramolecular charge transfer (ICT) character of the electronic transition. Photovoltaic performance evaluation reveals that the thieno [3,2-b] thiophene unit present in dye 8 leads to the best sensitizer of the set, with a conversion efficiency (η = 2.00%), best V(OC) (367 mV) and second best J(sc) (9.28 mA·cm(−2)), surpassed only by dye 9b (J(sc) = 10.19 mA·cm(−2)). This high photocurrent value can be attributed to increased donor ability of the 5,7-dimethoxy unit when compared to the 6,7 equivalent (9b). MDPI 2021-05-14 /pmc/articles/PMC8156968/ /pubmed/34069210 http://dx.doi.org/10.3390/molecules26102934 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sarrato, João
Pinto, Ana Lucia
Malta, Gabriela
Röck, Eva G.
Pina, João
Lima, João Carlos
Parola, A. Jorge
Branco, Paula S.
New 3-Ethynylaryl Coumarin-Based Dyes for DSSC Applications: Synthesis, Spectroscopic Properties, and Theoretical Calculations
title New 3-Ethynylaryl Coumarin-Based Dyes for DSSC Applications: Synthesis, Spectroscopic Properties, and Theoretical Calculations
title_full New 3-Ethynylaryl Coumarin-Based Dyes for DSSC Applications: Synthesis, Spectroscopic Properties, and Theoretical Calculations
title_fullStr New 3-Ethynylaryl Coumarin-Based Dyes for DSSC Applications: Synthesis, Spectroscopic Properties, and Theoretical Calculations
title_full_unstemmed New 3-Ethynylaryl Coumarin-Based Dyes for DSSC Applications: Synthesis, Spectroscopic Properties, and Theoretical Calculations
title_short New 3-Ethynylaryl Coumarin-Based Dyes for DSSC Applications: Synthesis, Spectroscopic Properties, and Theoretical Calculations
title_sort new 3-ethynylaryl coumarin-based dyes for dssc applications: synthesis, spectroscopic properties, and theoretical calculations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156968/
https://www.ncbi.nlm.nih.gov/pubmed/34069210
http://dx.doi.org/10.3390/molecules26102934
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