Tuning the role of charge-transfer states in intramolecular singlet exciton fission through side-group engineering

The understanding of how a singlet exciton separates into triplet states in organic semiconductors is crucial to the design of efficient organic solar cells. Here, Lukmanet al. identify the role played by charge-transfer states during triplet formation through side-group engineering of pentacenes.

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Autores principales: Steven Lukman, Kai Chen, Justin M. Hodgkiss, David H. P. Turban, Nicholas D. M. Hine, Shaoqiang Dong, Jishan Wu, Neil C. Greenham, Andrew J. Musser
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/735cefa1b8c34c43afa8e2f0ae465424
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spelling oai:doaj.org-article:735cefa1b8c34c43afa8e2f0ae4654242021-12-02T14:38:55ZTuning the role of charge-transfer states in intramolecular singlet exciton fission through side-group engineering10.1038/ncomms136222041-1723https://doaj.org/article/735cefa1b8c34c43afa8e2f0ae4654242016-12-01T00:00:00Zhttps://doi.org/10.1038/ncomms13622https://doaj.org/toc/2041-1723The understanding of how a singlet exciton separates into triplet states in organic semiconductors is crucial to the design of efficient organic solar cells. Here, Lukmanet al. identify the role played by charge-transfer states during triplet formation through side-group engineering of pentacenes.Steven LukmanKai ChenJustin M. HodgkissDavid H. P. TurbanNicholas D. M. HineShaoqiang DongJishan WuNeil C. GreenhamAndrew J. MusserNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-13 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Steven Lukman
Kai Chen
Justin M. Hodgkiss
David H. P. Turban
Nicholas D. M. Hine
Shaoqiang Dong
Jishan Wu
Neil C. Greenham
Andrew J. Musser
Tuning the role of charge-transfer states in intramolecular singlet exciton fission through side-group engineering
description The understanding of how a singlet exciton separates into triplet states in organic semiconductors is crucial to the design of efficient organic solar cells. Here, Lukmanet al. identify the role played by charge-transfer states during triplet formation through side-group engineering of pentacenes.
format article
author Steven Lukman
Kai Chen
Justin M. Hodgkiss
David H. P. Turban
Nicholas D. M. Hine
Shaoqiang Dong
Jishan Wu
Neil C. Greenham
Andrew J. Musser
author_facet Steven Lukman
Kai Chen
Justin M. Hodgkiss
David H. P. Turban
Nicholas D. M. Hine
Shaoqiang Dong
Jishan Wu
Neil C. Greenham
Andrew J. Musser
author_sort Steven Lukman
title Tuning the role of charge-transfer states in intramolecular singlet exciton fission through side-group engineering
title_short Tuning the role of charge-transfer states in intramolecular singlet exciton fission through side-group engineering
title_full Tuning the role of charge-transfer states in intramolecular singlet exciton fission through side-group engineering
title_fullStr Tuning the role of charge-transfer states in intramolecular singlet exciton fission through side-group engineering
title_full_unstemmed Tuning the role of charge-transfer states in intramolecular singlet exciton fission through side-group engineering
title_sort tuning the role of charge-transfer states in intramolecular singlet exciton fission through side-group engineering
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/735cefa1b8c34c43afa8e2f0ae465424
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