Atomically dispersed Pb ionic sites in PbCdSe quantum dot gels enhance room-temperature NO2 sensing

Quantum dot-based NO2 sensors often suffer from low sensitivity or long recovery times. Here, the authors report that bimetallic PbCdSe quantum dot gels containing atomically dispersed Pb ionic sites enable ultra-sensitive and fast NO2 sensing.

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Autores principales: Xin Geng, Shuwei Li, Lalani Mawella-Vithanage, Tao Ma, Mohamed Kilani, Bingwen Wang, Lu Ma, Chathuranga C. Hewa-Rahinduwage, Alina Shafikova, Eranda Nikolla, Guangzhao Mao, Stephanie L. Brock, Liang Zhang, Long Luo
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/21c0fa9f4a9148498357b15859d38263
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spelling oai:doaj.org-article:21c0fa9f4a9148498357b15859d382632021-12-02T19:06:43ZAtomically dispersed Pb ionic sites in PbCdSe quantum dot gels enhance room-temperature NO2 sensing10.1038/s41467-021-25192-42041-1723https://doaj.org/article/21c0fa9f4a9148498357b15859d382632021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25192-4https://doaj.org/toc/2041-1723Quantum dot-based NO2 sensors often suffer from low sensitivity or long recovery times. Here, the authors report that bimetallic PbCdSe quantum dot gels containing atomically dispersed Pb ionic sites enable ultra-sensitive and fast NO2 sensing.Xin GengShuwei LiLalani Mawella-VithanageTao MaMohamed KilaniBingwen WangLu MaChathuranga C. Hewa-RahinduwageAlina ShafikovaEranda NikollaGuangzhao MaoStephanie L. BrockLiang ZhangLong LuoNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xin Geng
Shuwei Li
Lalani Mawella-Vithanage
Tao Ma
Mohamed Kilani
Bingwen Wang
Lu Ma
Chathuranga C. Hewa-Rahinduwage
Alina Shafikova
Eranda Nikolla
Guangzhao Mao
Stephanie L. Brock
Liang Zhang
Long Luo
Atomically dispersed Pb ionic sites in PbCdSe quantum dot gels enhance room-temperature NO2 sensing
description Quantum dot-based NO2 sensors often suffer from low sensitivity or long recovery times. Here, the authors report that bimetallic PbCdSe quantum dot gels containing atomically dispersed Pb ionic sites enable ultra-sensitive and fast NO2 sensing.
format article
author Xin Geng
Shuwei Li
Lalani Mawella-Vithanage
Tao Ma
Mohamed Kilani
Bingwen Wang
Lu Ma
Chathuranga C. Hewa-Rahinduwage
Alina Shafikova
Eranda Nikolla
Guangzhao Mao
Stephanie L. Brock
Liang Zhang
Long Luo
author_facet Xin Geng
Shuwei Li
Lalani Mawella-Vithanage
Tao Ma
Mohamed Kilani
Bingwen Wang
Lu Ma
Chathuranga C. Hewa-Rahinduwage
Alina Shafikova
Eranda Nikolla
Guangzhao Mao
Stephanie L. Brock
Liang Zhang
Long Luo
author_sort Xin Geng
title Atomically dispersed Pb ionic sites in PbCdSe quantum dot gels enhance room-temperature NO2 sensing
title_short Atomically dispersed Pb ionic sites in PbCdSe quantum dot gels enhance room-temperature NO2 sensing
title_full Atomically dispersed Pb ionic sites in PbCdSe quantum dot gels enhance room-temperature NO2 sensing
title_fullStr Atomically dispersed Pb ionic sites in PbCdSe quantum dot gels enhance room-temperature NO2 sensing
title_full_unstemmed Atomically dispersed Pb ionic sites in PbCdSe quantum dot gels enhance room-temperature NO2 sensing
title_sort atomically dispersed pb ionic sites in pbcdse quantum dot gels enhance room-temperature no2 sensing
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/21c0fa9f4a9148498357b15859d38263
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