Integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor

The combination of fast photo-response and high gain plays a pivotal role in photodetector devices. Here the authors combine a colloidal quantum dot photodiode with a graphene phototransistor to overcome the speed, quantum efficiency and linear dynamic range limitations of available phototransistors...

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Autores principales: Ivan Nikitskiy, Stijn Goossens, Dominik Kufer, Tania Lasanta, Gabriele Navickaite, Frank H. L. Koppens, Gerasimos Konstantatos
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/7d2ffdca1bf14cccbfe875a59f86bc37
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spelling oai:doaj.org-article:7d2ffdca1bf14cccbfe875a59f86bc372021-12-02T16:57:02ZIntegrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor10.1038/ncomms119542041-1723https://doaj.org/article/7d2ffdca1bf14cccbfe875a59f86bc372016-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms11954https://doaj.org/toc/2041-1723The combination of fast photo-response and high gain plays a pivotal role in photodetector devices. Here the authors combine a colloidal quantum dot photodiode with a graphene phototransistor to overcome the speed, quantum efficiency and linear dynamic range limitations of available phototransistors.Ivan NikitskiyStijn GoossensDominik KuferTania LasantaGabriele NavickaiteFrank H. L. KoppensGerasimos KonstantatosNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ivan Nikitskiy
Stijn Goossens
Dominik Kufer
Tania Lasanta
Gabriele Navickaite
Frank H. L. Koppens
Gerasimos Konstantatos
Integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor
description The combination of fast photo-response and high gain plays a pivotal role in photodetector devices. Here the authors combine a colloidal quantum dot photodiode with a graphene phototransistor to overcome the speed, quantum efficiency and linear dynamic range limitations of available phototransistors.
format article
author Ivan Nikitskiy
Stijn Goossens
Dominik Kufer
Tania Lasanta
Gabriele Navickaite
Frank H. L. Koppens
Gerasimos Konstantatos
author_facet Ivan Nikitskiy
Stijn Goossens
Dominik Kufer
Tania Lasanta
Gabriele Navickaite
Frank H. L. Koppens
Gerasimos Konstantatos
author_sort Ivan Nikitskiy
title Integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor
title_short Integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor
title_full Integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor
title_fullStr Integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor
title_full_unstemmed Integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor
title_sort integrating an electrically active colloidal quantum dot photodiode with a graphene phototransistor
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/7d2ffdca1bf14cccbfe875a59f86bc37
work_keys_str_mv AT ivannikitskiy integratinganelectricallyactivecolloidalquantumdotphotodiodewithagraphenephototransistor
AT stijngoossens integratinganelectricallyactivecolloidalquantumdotphotodiodewithagraphenephototransistor
AT dominikkufer integratinganelectricallyactivecolloidalquantumdotphotodiodewithagraphenephototransistor
AT tanialasanta integratinganelectricallyactivecolloidalquantumdotphotodiodewithagraphenephototransistor
AT gabrielenavickaite integratinganelectricallyactivecolloidalquantumdotphotodiodewithagraphenephototransistor
AT frankhlkoppens integratinganelectricallyactivecolloidalquantumdotphotodiodewithagraphenephototransistor
AT gerasimoskonstantatos integratinganelectricallyactivecolloidalquantumdotphotodiodewithagraphenephototransistor
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