Regio- and conformational isomerization critical to design of efficient thermally-activated delayed fluorescence emitters

The search for brighter emitting materials is essential to the development of OLED devices. Etheringtonet al. show how the presence of two regioisomers of a donor-acceptor-donor thermally-activated delayed fluorescence molecule affects the device efficiency, with one acting as a triplet quencher.

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Autores principales: Marc K. Etherington, Flavio Franchello, Jamie Gibson, Thomas Northey, Jose Santos, Jonathan S. Ward, Heather F. Higginbotham, Przemyslaw Data, Aleksandra Kurowska, Paloma Lays Dos Santos, David R. Graves, Andrei S. Batsanov, Fernando B. Dias, Martin R. Bryce, Thomas J. Penfold, Andrew P. Monkman
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/14ad6776457840c68577f5b341e36563
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spelling oai:doaj.org-article:14ad6776457840c68577f5b341e365632021-12-02T14:40:22ZRegio- and conformational isomerization critical to design of efficient thermally-activated delayed fluorescence emitters10.1038/ncomms149872041-1723https://doaj.org/article/14ad6776457840c68577f5b341e365632017-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms14987https://doaj.org/toc/2041-1723The search for brighter emitting materials is essential to the development of OLED devices. Etheringtonet al. show how the presence of two regioisomers of a donor-acceptor-donor thermally-activated delayed fluorescence molecule affects the device efficiency, with one acting as a triplet quencher.Marc K. EtheringtonFlavio FranchelloJamie GibsonThomas NortheyJose SantosJonathan S. WardHeather F. HigginbothamPrzemyslaw DataAleksandra KurowskaPaloma Lays Dos SantosDavid R. GravesAndrei S. BatsanovFernando B. DiasMartin R. BryceThomas J. PenfoldAndrew P. MonkmanNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Marc K. Etherington
Flavio Franchello
Jamie Gibson
Thomas Northey
Jose Santos
Jonathan S. Ward
Heather F. Higginbotham
Przemyslaw Data
Aleksandra Kurowska
Paloma Lays Dos Santos
David R. Graves
Andrei S. Batsanov
Fernando B. Dias
Martin R. Bryce
Thomas J. Penfold
Andrew P. Monkman
Regio- and conformational isomerization critical to design of efficient thermally-activated delayed fluorescence emitters
description The search for brighter emitting materials is essential to the development of OLED devices. Etheringtonet al. show how the presence of two regioisomers of a donor-acceptor-donor thermally-activated delayed fluorescence molecule affects the device efficiency, with one acting as a triplet quencher.
format article
author Marc K. Etherington
Flavio Franchello
Jamie Gibson
Thomas Northey
Jose Santos
Jonathan S. Ward
Heather F. Higginbotham
Przemyslaw Data
Aleksandra Kurowska
Paloma Lays Dos Santos
David R. Graves
Andrei S. Batsanov
Fernando B. Dias
Martin R. Bryce
Thomas J. Penfold
Andrew P. Monkman
author_facet Marc K. Etherington
Flavio Franchello
Jamie Gibson
Thomas Northey
Jose Santos
Jonathan S. Ward
Heather F. Higginbotham
Przemyslaw Data
Aleksandra Kurowska
Paloma Lays Dos Santos
David R. Graves
Andrei S. Batsanov
Fernando B. Dias
Martin R. Bryce
Thomas J. Penfold
Andrew P. Monkman
author_sort Marc K. Etherington
title Regio- and conformational isomerization critical to design of efficient thermally-activated delayed fluorescence emitters
title_short Regio- and conformational isomerization critical to design of efficient thermally-activated delayed fluorescence emitters
title_full Regio- and conformational isomerization critical to design of efficient thermally-activated delayed fluorescence emitters
title_fullStr Regio- and conformational isomerization critical to design of efficient thermally-activated delayed fluorescence emitters
title_full_unstemmed Regio- and conformational isomerization critical to design of efficient thermally-activated delayed fluorescence emitters
title_sort regio- and conformational isomerization critical to design of efficient thermally-activated delayed fluorescence emitters
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/14ad6776457840c68577f5b341e36563
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