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Flavanthrene derivatives as photostable and efficient singlet exciton fission materials

Singlet exciton fission (SF) is believed to have the potential to break the Shockley–Queisser limit for third-generation solar cell devices, so it has attracted great attention. Conventional linear acene based SF materials generally suffer from low triplet energy and poor photostability. We report h...

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Autores principales: Fei, Xian, Zhang, San, Zhai, Dong, Wang, Zhiwei, Lin, Jin-Liang, Xiao, Qi, Sun, Chun-Lin, Deng, Weiqiao, Zhang, Chunfeng, Hu, Wenping, Zhang, Hao-Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9430411/
https://www.ncbi.nlm.nih.gov/pubmed/36128249
http://dx.doi.org/10.1039/d2sc00263a
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author Fei, Xian
Zhang, San
Zhai, Dong
Wang, Zhiwei
Lin, Jin-Liang
Xiao, Qi
Sun, Chun-Lin
Deng, Weiqiao
Zhang, Chunfeng
Hu, Wenping
Zhang, Hao-Li
author_facet Fei, Xian
Zhang, San
Zhai, Dong
Wang, Zhiwei
Lin, Jin-Liang
Xiao, Qi
Sun, Chun-Lin
Deng, Weiqiao
Zhang, Chunfeng
Hu, Wenping
Zhang, Hao-Li
author_sort Fei, Xian
collection PubMed
description Singlet exciton fission (SF) is believed to have the potential to break the Shockley–Queisser limit for third-generation solar cell devices, so it has attracted great attention. Conventional linear acene based SF materials generally suffer from low triplet energy and poor photostability. We report herein two flavanthrene derivatives, EH-Fla and TIPS-Fla, as new photostable singlet exciton fission materials. These N-doped two-dimensional angular fused acenes have three sets of aromatic Clar sextets, making them significantly more stable than linear acenes with only one sextet. Time-resolved spectroscopy characterization reveals that the SF process occurs in the polycrystalline films of EH-Fla and TIPS-Fla, with maximal triplet yields of 32% and 159%, respectively. The SF processes of these two molecules are mediated by excimer states. In EH-Fla, the low-lying excimer prevents the SF process from occurring effectively, resulting in a low triplet yield. In contrast, the excimer state in TIPS-Fla is mixed with strong CT coupling, which prompts efficient SF and results in a high triplet yield. Our results show that flavanthrene is a promising SF chromophore for photoenergy conversion applications, while a fine-tune of the intermolecular interaction is crucial for achieving high SF efficiency.
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spelling pubmed-94304112022-09-19 Flavanthrene derivatives as photostable and efficient singlet exciton fission materials Fei, Xian Zhang, San Zhai, Dong Wang, Zhiwei Lin, Jin-Liang Xiao, Qi Sun, Chun-Lin Deng, Weiqiao Zhang, Chunfeng Hu, Wenping Zhang, Hao-Li Chem Sci Chemistry Singlet exciton fission (SF) is believed to have the potential to break the Shockley–Queisser limit for third-generation solar cell devices, so it has attracted great attention. Conventional linear acene based SF materials generally suffer from low triplet energy and poor photostability. We report herein two flavanthrene derivatives, EH-Fla and TIPS-Fla, as new photostable singlet exciton fission materials. These N-doped two-dimensional angular fused acenes have three sets of aromatic Clar sextets, making them significantly more stable than linear acenes with only one sextet. Time-resolved spectroscopy characterization reveals that the SF process occurs in the polycrystalline films of EH-Fla and TIPS-Fla, with maximal triplet yields of 32% and 159%, respectively. The SF processes of these two molecules are mediated by excimer states. In EH-Fla, the low-lying excimer prevents the SF process from occurring effectively, resulting in a low triplet yield. In contrast, the excimer state in TIPS-Fla is mixed with strong CT coupling, which prompts efficient SF and results in a high triplet yield. Our results show that flavanthrene is a promising SF chromophore for photoenergy conversion applications, while a fine-tune of the intermolecular interaction is crucial for achieving high SF efficiency. The Royal Society of Chemistry 2022-07-27 /pmc/articles/PMC9430411/ /pubmed/36128249 http://dx.doi.org/10.1039/d2sc00263a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Fei, Xian
Zhang, San
Zhai, Dong
Wang, Zhiwei
Lin, Jin-Liang
Xiao, Qi
Sun, Chun-Lin
Deng, Weiqiao
Zhang, Chunfeng
Hu, Wenping
Zhang, Hao-Li
Flavanthrene derivatives as photostable and efficient singlet exciton fission materials
title Flavanthrene derivatives as photostable and efficient singlet exciton fission materials
title_full Flavanthrene derivatives as photostable and efficient singlet exciton fission materials
title_fullStr Flavanthrene derivatives as photostable and efficient singlet exciton fission materials
title_full_unstemmed Flavanthrene derivatives as photostable and efficient singlet exciton fission materials
title_short Flavanthrene derivatives as photostable and efficient singlet exciton fission materials
title_sort flavanthrene derivatives as photostable and efficient singlet exciton fission materials
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9430411/
https://www.ncbi.nlm.nih.gov/pubmed/36128249
http://dx.doi.org/10.1039/d2sc00263a
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