Organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption

Interfaces of organic donor-acceptor blends provide intermolecular charge-transfer states with red-shifted but weak absorption. By introducing an optical micro-cavity; Siegmundet al., enhance their photoresponse to achieve narrowband NIR photodetection with broad spectral tunability.

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Autores principales: Bernhard Siegmund, Andreas Mischok, Johannes Benduhn, Olaf Zeika, Sascha Ullbrich, Frederik Nehm, Matthias Böhm, Donato Spoltore, Hartmut Fröb, Christian Körner, Karl Leo, Koen Vandewal
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/ac81e24c444043f89d4368527c637eaa
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spelling oai:doaj.org-article:ac81e24c444043f89d4368527c637eaa2021-12-02T15:38:49ZOrganic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption10.1038/ncomms154212041-1723https://doaj.org/article/ac81e24c444043f89d4368527c637eaa2017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15421https://doaj.org/toc/2041-1723Interfaces of organic donor-acceptor blends provide intermolecular charge-transfer states with red-shifted but weak absorption. By introducing an optical micro-cavity; Siegmundet al., enhance their photoresponse to achieve narrowband NIR photodetection with broad spectral tunability.Bernhard SiegmundAndreas MischokJohannes BenduhnOlaf ZeikaSascha UllbrichFrederik NehmMatthias BöhmDonato SpoltoreHartmut FröbChristian KörnerKarl LeoKoen VandewalNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-6 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Bernhard Siegmund
Andreas Mischok
Johannes Benduhn
Olaf Zeika
Sascha Ullbrich
Frederik Nehm
Matthias Böhm
Donato Spoltore
Hartmut Fröb
Christian Körner
Karl Leo
Koen Vandewal
Organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption
description Interfaces of organic donor-acceptor blends provide intermolecular charge-transfer states with red-shifted but weak absorption. By introducing an optical micro-cavity; Siegmundet al., enhance their photoresponse to achieve narrowband NIR photodetection with broad spectral tunability.
format article
author Bernhard Siegmund
Andreas Mischok
Johannes Benduhn
Olaf Zeika
Sascha Ullbrich
Frederik Nehm
Matthias Böhm
Donato Spoltore
Hartmut Fröb
Christian Körner
Karl Leo
Koen Vandewal
author_facet Bernhard Siegmund
Andreas Mischok
Johannes Benduhn
Olaf Zeika
Sascha Ullbrich
Frederik Nehm
Matthias Böhm
Donato Spoltore
Hartmut Fröb
Christian Körner
Karl Leo
Koen Vandewal
author_sort Bernhard Siegmund
title Organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption
title_short Organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption
title_full Organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption
title_fullStr Organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption
title_full_unstemmed Organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption
title_sort organic narrowband near-infrared photodetectors based on intermolecular charge-transfer absorption
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/ac81e24c444043f89d4368527c637eaa
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