Giant photoluminescence enhancement in tungsten-diselenide–gold plasmonic hybrid structures

Two-dimensional materials have excellent electrical properties, but poor luminescence limits their application in optoelectronics. Here, the authors demonstrate a plasmon-induced 20,000-fold enhancement in photoluminescence from tungsten diselenide suspended across a nanometre-scale gap.

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Autores principales: Zhuo Wang, Zhaogang Dong, Yinghong Gu, Yung-Huang Chang, Lei Zhang, Lain-Jong Li, Weijie Zhao, Goki Eda, Wenjing Zhang, Gustavo Grinblat, Stefan A. Maier, Joel K. W. Yang, Cheng-Wei Qiu, Andrew T. S. Wee
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/8170745bb29747da8e88497c8f6e7eb1
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spelling oai:doaj.org-article:8170745bb29747da8e88497c8f6e7eb12021-12-02T17:32:37ZGiant photoluminescence enhancement in tungsten-diselenide–gold plasmonic hybrid structures10.1038/ncomms112832041-1723https://doaj.org/article/8170745bb29747da8e88497c8f6e7eb12016-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms11283https://doaj.org/toc/2041-1723Two-dimensional materials have excellent electrical properties, but poor luminescence limits their application in optoelectronics. Here, the authors demonstrate a plasmon-induced 20,000-fold enhancement in photoluminescence from tungsten diselenide suspended across a nanometre-scale gap.Zhuo WangZhaogang DongYinghong GuYung-Huang ChangLei ZhangLain-Jong LiWeijie ZhaoGoki EdaWenjing ZhangGustavo GrinblatStefan A. MaierJoel K. W. YangCheng-Wei QiuAndrew T. S. WeeNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhuo Wang
Zhaogang Dong
Yinghong Gu
Yung-Huang Chang
Lei Zhang
Lain-Jong Li
Weijie Zhao
Goki Eda
Wenjing Zhang
Gustavo Grinblat
Stefan A. Maier
Joel K. W. Yang
Cheng-Wei Qiu
Andrew T. S. Wee
Giant photoluminescence enhancement in tungsten-diselenide–gold plasmonic hybrid structures
description Two-dimensional materials have excellent electrical properties, but poor luminescence limits their application in optoelectronics. Here, the authors demonstrate a plasmon-induced 20,000-fold enhancement in photoluminescence from tungsten diselenide suspended across a nanometre-scale gap.
format article
author Zhuo Wang
Zhaogang Dong
Yinghong Gu
Yung-Huang Chang
Lei Zhang
Lain-Jong Li
Weijie Zhao
Goki Eda
Wenjing Zhang
Gustavo Grinblat
Stefan A. Maier
Joel K. W. Yang
Cheng-Wei Qiu
Andrew T. S. Wee
author_facet Zhuo Wang
Zhaogang Dong
Yinghong Gu
Yung-Huang Chang
Lei Zhang
Lain-Jong Li
Weijie Zhao
Goki Eda
Wenjing Zhang
Gustavo Grinblat
Stefan A. Maier
Joel K. W. Yang
Cheng-Wei Qiu
Andrew T. S. Wee
author_sort Zhuo Wang
title Giant photoluminescence enhancement in tungsten-diselenide–gold plasmonic hybrid structures
title_short Giant photoluminescence enhancement in tungsten-diselenide–gold plasmonic hybrid structures
title_full Giant photoluminescence enhancement in tungsten-diselenide–gold plasmonic hybrid structures
title_fullStr Giant photoluminescence enhancement in tungsten-diselenide–gold plasmonic hybrid structures
title_full_unstemmed Giant photoluminescence enhancement in tungsten-diselenide–gold plasmonic hybrid structures
title_sort giant photoluminescence enhancement in tungsten-diselenide–gold plasmonic hybrid structures
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/8170745bb29747da8e88497c8f6e7eb1
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