Tuning infrared plasmon resonances in doped metal-oxide nanocrystals through cation-exchange reactions

Doping semiconductor nanocrystals with impurity atoms is a key pathway for tuning their plasmonic properties. Here, the authors use a cation exchange strategy to dope p-type or n-type metal ions into n-type metal-oxide nanocrystals, post-synthetically tailoring their localized surface plasmon resona...

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Autores principales: Zeke Liu, Yaxu Zhong, Ibrahim Shafei, Ryan Borman, Soojin Jeong, Jun Chen, Yaroslav Losovyj, Xinfeng Gao, Na Li, Yaping Du, Erik Sarnello, Tao Li, Dong Su, Wanli Ma, Xingchen Ye
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/a32bba870fa44dd1a97f98ccf8f85fbe
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spelling oai:doaj.org-article:a32bba870fa44dd1a97f98ccf8f85fbe2021-12-02T15:35:47ZTuning infrared plasmon resonances in doped metal-oxide nanocrystals through cation-exchange reactions10.1038/s41467-019-09165-22041-1723https://doaj.org/article/a32bba870fa44dd1a97f98ccf8f85fbe2019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09165-2https://doaj.org/toc/2041-1723Doping semiconductor nanocrystals with impurity atoms is a key pathway for tuning their plasmonic properties. Here, the authors use a cation exchange strategy to dope p-type or n-type metal ions into n-type metal-oxide nanocrystals, post-synthetically tailoring their localized surface plasmon resonances in the infrared region.Zeke LiuYaxu ZhongIbrahim ShafeiRyan BormanSoojin JeongJun ChenYaroslav LosovyjXinfeng GaoNa LiYaping DuErik SarnelloTao LiDong SuWanli MaXingchen YeNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zeke Liu
Yaxu Zhong
Ibrahim Shafei
Ryan Borman
Soojin Jeong
Jun Chen
Yaroslav Losovyj
Xinfeng Gao
Na Li
Yaping Du
Erik Sarnello
Tao Li
Dong Su
Wanli Ma
Xingchen Ye
Tuning infrared plasmon resonances in doped metal-oxide nanocrystals through cation-exchange reactions
description Doping semiconductor nanocrystals with impurity atoms is a key pathway for tuning their plasmonic properties. Here, the authors use a cation exchange strategy to dope p-type or n-type metal ions into n-type metal-oxide nanocrystals, post-synthetically tailoring their localized surface plasmon resonances in the infrared region.
format article
author Zeke Liu
Yaxu Zhong
Ibrahim Shafei
Ryan Borman
Soojin Jeong
Jun Chen
Yaroslav Losovyj
Xinfeng Gao
Na Li
Yaping Du
Erik Sarnello
Tao Li
Dong Su
Wanli Ma
Xingchen Ye
author_facet Zeke Liu
Yaxu Zhong
Ibrahim Shafei
Ryan Borman
Soojin Jeong
Jun Chen
Yaroslav Losovyj
Xinfeng Gao
Na Li
Yaping Du
Erik Sarnello
Tao Li
Dong Su
Wanli Ma
Xingchen Ye
author_sort Zeke Liu
title Tuning infrared plasmon resonances in doped metal-oxide nanocrystals through cation-exchange reactions
title_short Tuning infrared plasmon resonances in doped metal-oxide nanocrystals through cation-exchange reactions
title_full Tuning infrared plasmon resonances in doped metal-oxide nanocrystals through cation-exchange reactions
title_fullStr Tuning infrared plasmon resonances in doped metal-oxide nanocrystals through cation-exchange reactions
title_full_unstemmed Tuning infrared plasmon resonances in doped metal-oxide nanocrystals through cation-exchange reactions
title_sort tuning infrared plasmon resonances in doped metal-oxide nanocrystals through cation-exchange reactions
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/a32bba870fa44dd1a97f98ccf8f85fbe
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