Sr[Li2Al2O2N2]:Eu2+—A high performance red phosphor to brighten the future

Developing innovative materials for reduced energy consumption in phosphor converted white light-emitting diodes remains a challenge. Here, the authors report a narrow band red-emitting oxonitride material with a highly symmetrical Sr2 + coordination for energy efficient white light-emitting diodes....

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Autores principales: Gregor J. Hoerder, Markus Seibald, Dominik Baumann, Thorsten Schröder, Simon Peschke, Philipp C. Schmid, Tobias Tyborski, Philipp Pust, Ion Stoll, Michael Bergler, Christian Patzig, Stephan Reißaus, Michael Krause, Lutz Berthold, Thomas Höche, Dirk Johrendt, Hubert Huppertz
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/60dd6c4698a44eb3b6c4169538142be9
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spelling oai:doaj.org-article:60dd6c4698a44eb3b6c4169538142be92021-12-02T16:57:25ZSr[Li2Al2O2N2]:Eu2+—A high performance red phosphor to brighten the future10.1038/s41467-019-09632-w2041-1723https://doaj.org/article/60dd6c4698a44eb3b6c4169538142be92019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09632-whttps://doaj.org/toc/2041-1723Developing innovative materials for reduced energy consumption in phosphor converted white light-emitting diodes remains a challenge. Here, the authors report a narrow band red-emitting oxonitride material with a highly symmetrical Sr2 + coordination for energy efficient white light-emitting diodes.Gregor J. HoerderMarkus SeibaldDominik BaumannThorsten SchröderSimon PeschkePhilipp C. SchmidTobias TyborskiPhilipp PustIon StollMichael BerglerChristian PatzigStephan ReißausMichael KrauseLutz BertholdThomas HöcheDirk JohrendtHubert HuppertzNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gregor J. Hoerder
Markus Seibald
Dominik Baumann
Thorsten Schröder
Simon Peschke
Philipp C. Schmid
Tobias Tyborski
Philipp Pust
Ion Stoll
Michael Bergler
Christian Patzig
Stephan Reißaus
Michael Krause
Lutz Berthold
Thomas Höche
Dirk Johrendt
Hubert Huppertz
Sr[Li2Al2O2N2]:Eu2+—A high performance red phosphor to brighten the future
description Developing innovative materials for reduced energy consumption in phosphor converted white light-emitting diodes remains a challenge. Here, the authors report a narrow band red-emitting oxonitride material with a highly symmetrical Sr2 + coordination for energy efficient white light-emitting diodes.
format article
author Gregor J. Hoerder
Markus Seibald
Dominik Baumann
Thorsten Schröder
Simon Peschke
Philipp C. Schmid
Tobias Tyborski
Philipp Pust
Ion Stoll
Michael Bergler
Christian Patzig
Stephan Reißaus
Michael Krause
Lutz Berthold
Thomas Höche
Dirk Johrendt
Hubert Huppertz
author_facet Gregor J. Hoerder
Markus Seibald
Dominik Baumann
Thorsten Schröder
Simon Peschke
Philipp C. Schmid
Tobias Tyborski
Philipp Pust
Ion Stoll
Michael Bergler
Christian Patzig
Stephan Reißaus
Michael Krause
Lutz Berthold
Thomas Höche
Dirk Johrendt
Hubert Huppertz
author_sort Gregor J. Hoerder
title Sr[Li2Al2O2N2]:Eu2+—A high performance red phosphor to brighten the future
title_short Sr[Li2Al2O2N2]:Eu2+—A high performance red phosphor to brighten the future
title_full Sr[Li2Al2O2N2]:Eu2+—A high performance red phosphor to brighten the future
title_fullStr Sr[Li2Al2O2N2]:Eu2+—A high performance red phosphor to brighten the future
title_full_unstemmed Sr[Li2Al2O2N2]:Eu2+—A high performance red phosphor to brighten the future
title_sort sr[li2al2o2n2]:eu2+—a high performance red phosphor to brighten the future
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/60dd6c4698a44eb3b6c4169538142be9
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