Cargando…

Push-pull photochromic dyes for semi-transparent solar cells with light-adjustable optical properties and high color-rendering index

We report the design, synthesis and characterization of push–pull photochromic naphthopyran dyes, incorporating different carbazole moieties as the electron-donor group for use in dye-sensitized solar cells. Compared to a reference dye incorporating a diphenylamine-type donor moiety, the introductio...

Descripción completa

Detalles Bibliográficos
Autores principales: Fauvel, Samuel, Riquelme, Antonio J., Andrés Castán, José-María, Mwalukuku, Valid Mwatati, Kervella, Yann, Challuri, Vijay Kumar, Sauvage, Frédéric, Narbey, Stéphanie, Maldivi, Pascale, Aumaître, Cyril, Demadrille, Renaud
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10430641/
https://www.ncbi.nlm.nih.gov/pubmed/37592994
http://dx.doi.org/10.1039/d3sc02328a
_version_ 1785091015119470592
author Fauvel, Samuel
Riquelme, Antonio J.
Andrés Castán, José-María
Mwalukuku, Valid Mwatati
Kervella, Yann
Challuri, Vijay Kumar
Sauvage, Frédéric
Narbey, Stéphanie
Maldivi, Pascale
Aumaître, Cyril
Demadrille, Renaud
author_facet Fauvel, Samuel
Riquelme, Antonio J.
Andrés Castán, José-María
Mwalukuku, Valid Mwatati
Kervella, Yann
Challuri, Vijay Kumar
Sauvage, Frédéric
Narbey, Stéphanie
Maldivi, Pascale
Aumaître, Cyril
Demadrille, Renaud
author_sort Fauvel, Samuel
collection PubMed
description We report the design, synthesis and characterization of push–pull photochromic naphthopyran dyes, incorporating different carbazole moieties as the electron-donor group for use in dye-sensitized solar cells. Compared to a reference dye incorporating a diphenylamine-type donor moiety, the introduction of functionalized carbazoles allows for a hypsochromic shift of the absorption of the coloured isomers of the dyes in the visible region and a better tuning of their spectra to the photopic response of the human eye. Under illumination, the molecules exhibit a broad absorption with a maximum comprised between 546 nm and 571 nm in solution and they reveal relatively fast discoloration kinetics. By using these dyes to fabricate photochromic solar cells whose optical and photovoltaic properties vary with the light exposure, we have achieved a PCE of up to 3% in opaque cells. Using these molecules in semi-transparent solar cells with different electrolytes, a PCE of 2.3% was achieved. We also produced a semi-transparent mini-module with an average visible transmittance varying between 66% and 50% and a colour rendering index around 95 in both the uncoloured and coloured states.
format Online
Article
Text
id pubmed-10430641
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-104306412023-08-17 Push-pull photochromic dyes for semi-transparent solar cells with light-adjustable optical properties and high color-rendering index Fauvel, Samuel Riquelme, Antonio J. Andrés Castán, José-María Mwalukuku, Valid Mwatati Kervella, Yann Challuri, Vijay Kumar Sauvage, Frédéric Narbey, Stéphanie Maldivi, Pascale Aumaître, Cyril Demadrille, Renaud Chem Sci Chemistry We report the design, synthesis and characterization of push–pull photochromic naphthopyran dyes, incorporating different carbazole moieties as the electron-donor group for use in dye-sensitized solar cells. Compared to a reference dye incorporating a diphenylamine-type donor moiety, the introduction of functionalized carbazoles allows for a hypsochromic shift of the absorption of the coloured isomers of the dyes in the visible region and a better tuning of their spectra to the photopic response of the human eye. Under illumination, the molecules exhibit a broad absorption with a maximum comprised between 546 nm and 571 nm in solution and they reveal relatively fast discoloration kinetics. By using these dyes to fabricate photochromic solar cells whose optical and photovoltaic properties vary with the light exposure, we have achieved a PCE of up to 3% in opaque cells. Using these molecules in semi-transparent solar cells with different electrolytes, a PCE of 2.3% was achieved. We also produced a semi-transparent mini-module with an average visible transmittance varying between 66% and 50% and a colour rendering index around 95 in both the uncoloured and coloured states. The Royal Society of Chemistry 2023-07-31 /pmc/articles/PMC10430641/ /pubmed/37592994 http://dx.doi.org/10.1039/d3sc02328a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Fauvel, Samuel
Riquelme, Antonio J.
Andrés Castán, José-María
Mwalukuku, Valid Mwatati
Kervella, Yann
Challuri, Vijay Kumar
Sauvage, Frédéric
Narbey, Stéphanie
Maldivi, Pascale
Aumaître, Cyril
Demadrille, Renaud
Push-pull photochromic dyes for semi-transparent solar cells with light-adjustable optical properties and high color-rendering index
title Push-pull photochromic dyes for semi-transparent solar cells with light-adjustable optical properties and high color-rendering index
title_full Push-pull photochromic dyes for semi-transparent solar cells with light-adjustable optical properties and high color-rendering index
title_fullStr Push-pull photochromic dyes for semi-transparent solar cells with light-adjustable optical properties and high color-rendering index
title_full_unstemmed Push-pull photochromic dyes for semi-transparent solar cells with light-adjustable optical properties and high color-rendering index
title_short Push-pull photochromic dyes for semi-transparent solar cells with light-adjustable optical properties and high color-rendering index
title_sort push-pull photochromic dyes for semi-transparent solar cells with light-adjustable optical properties and high color-rendering index
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10430641/
https://www.ncbi.nlm.nih.gov/pubmed/37592994
http://dx.doi.org/10.1039/d3sc02328a
work_keys_str_mv AT fauvelsamuel pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT riquelmeantonioj pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT andrescastanjosemaria pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT mwalukukuvalidmwatati pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT kervellayann pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT challurivijaykumar pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT sauvagefrederic pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT narbeystephanie pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT maldivipascale pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT aumaitrecyril pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex
AT demadrillerenaud pushpullphotochromicdyesforsemitransparentsolarcellswithlightadjustableopticalpropertiesandhighcolorrenderingindex