Cargando…

NH(3) Sensor Based on 3D Hierarchical Flower-Shaped n-ZnO/p-NiO Heterostructures Yields Outstanding Sensing Capabilities at ppb Level

Hierarchical three-dimensional (3D) flower-like n-ZnO/p-NiO heterostructures with various Zn(x)Ni(y) molar ratios (Zn(5)Ni(1), Zn(2)Ni(1), Zn(1)Ni(1), Zn(1)Ni(2) and Zn(1)Ni(5)) were synthesized by a facile hydrothermal method. Their crystal phase, surface morphology, elemental composition and chemi...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhao, Zhenting, Yang, Haoyue, Wei, Zihan, Xue, Yan, Sun, Yongjiao, Zhang, Wenlei, Li, Pengwei, Gong, Weiping, Zhuiykov, Serge, Hu, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7506851/
https://www.ncbi.nlm.nih.gov/pubmed/32842675
http://dx.doi.org/10.3390/s20174754
_version_ 1783585107658932224
author Zhao, Zhenting
Yang, Haoyue
Wei, Zihan
Xue, Yan
Sun, Yongjiao
Zhang, Wenlei
Li, Pengwei
Gong, Weiping
Zhuiykov, Serge
Hu, Jie
author_facet Zhao, Zhenting
Yang, Haoyue
Wei, Zihan
Xue, Yan
Sun, Yongjiao
Zhang, Wenlei
Li, Pengwei
Gong, Weiping
Zhuiykov, Serge
Hu, Jie
author_sort Zhao, Zhenting
collection PubMed
description Hierarchical three-dimensional (3D) flower-like n-ZnO/p-NiO heterostructures with various Zn(x)Ni(y) molar ratios (Zn(5)Ni(1), Zn(2)Ni(1), Zn(1)Ni(1), Zn(1)Ni(2) and Zn(1)Ni(5)) were synthesized by a facile hydrothermal method. Their crystal phase, surface morphology, elemental composition and chemical state were comprehensively investigated by XRD, SEM, EDS, TEM and XPS techniques. Gas sensing measurements were conducted on all the as-developed Zn(x)Ni(y)-based sensors toward ammonia (NH(3)) detection under various working temperatures from 160 to 340 °C. In particular, the as-prepared Zn(1)Ni(2) sensor exhibited superior NH(3) sensing performance under optimum working temperature (280 °C) including high response (25 toward 100 ppm), fast response/recovery time (16 s/7 s), low detection limit (50 ppb), good selectivity and long-term stability. The enhanced NH(3) sensing capabilities of Zn(1)Ni(2) sensor could be attributed to both the specific hierarchical structure which facilitates the adsorption of NH(3) molecules and produces much more contact sites, and the improved gas response characteristics of p-n heterojunctions. The obtained results clear demonstrated that the optimum n-ZnO/p-NiO heterostructure is indeed very promising sensing material toward NH(3) detection for different applications.
format Online
Article
Text
id pubmed-7506851
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75068512020-09-26 NH(3) Sensor Based on 3D Hierarchical Flower-Shaped n-ZnO/p-NiO Heterostructures Yields Outstanding Sensing Capabilities at ppb Level Zhao, Zhenting Yang, Haoyue Wei, Zihan Xue, Yan Sun, Yongjiao Zhang, Wenlei Li, Pengwei Gong, Weiping Zhuiykov, Serge Hu, Jie Sensors (Basel) Article Hierarchical three-dimensional (3D) flower-like n-ZnO/p-NiO heterostructures with various Zn(x)Ni(y) molar ratios (Zn(5)Ni(1), Zn(2)Ni(1), Zn(1)Ni(1), Zn(1)Ni(2) and Zn(1)Ni(5)) were synthesized by a facile hydrothermal method. Their crystal phase, surface morphology, elemental composition and chemical state were comprehensively investigated by XRD, SEM, EDS, TEM and XPS techniques. Gas sensing measurements were conducted on all the as-developed Zn(x)Ni(y)-based sensors toward ammonia (NH(3)) detection under various working temperatures from 160 to 340 °C. In particular, the as-prepared Zn(1)Ni(2) sensor exhibited superior NH(3) sensing performance under optimum working temperature (280 °C) including high response (25 toward 100 ppm), fast response/recovery time (16 s/7 s), low detection limit (50 ppb), good selectivity and long-term stability. The enhanced NH(3) sensing capabilities of Zn(1)Ni(2) sensor could be attributed to both the specific hierarchical structure which facilitates the adsorption of NH(3) molecules and produces much more contact sites, and the improved gas response characteristics of p-n heterojunctions. The obtained results clear demonstrated that the optimum n-ZnO/p-NiO heterostructure is indeed very promising sensing material toward NH(3) detection for different applications. MDPI 2020-08-22 /pmc/articles/PMC7506851/ /pubmed/32842675 http://dx.doi.org/10.3390/s20174754 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhao, Zhenting
Yang, Haoyue
Wei, Zihan
Xue, Yan
Sun, Yongjiao
Zhang, Wenlei
Li, Pengwei
Gong, Weiping
Zhuiykov, Serge
Hu, Jie
NH(3) Sensor Based on 3D Hierarchical Flower-Shaped n-ZnO/p-NiO Heterostructures Yields Outstanding Sensing Capabilities at ppb Level
title NH(3) Sensor Based on 3D Hierarchical Flower-Shaped n-ZnO/p-NiO Heterostructures Yields Outstanding Sensing Capabilities at ppb Level
title_full NH(3) Sensor Based on 3D Hierarchical Flower-Shaped n-ZnO/p-NiO Heterostructures Yields Outstanding Sensing Capabilities at ppb Level
title_fullStr NH(3) Sensor Based on 3D Hierarchical Flower-Shaped n-ZnO/p-NiO Heterostructures Yields Outstanding Sensing Capabilities at ppb Level
title_full_unstemmed NH(3) Sensor Based on 3D Hierarchical Flower-Shaped n-ZnO/p-NiO Heterostructures Yields Outstanding Sensing Capabilities at ppb Level
title_short NH(3) Sensor Based on 3D Hierarchical Flower-Shaped n-ZnO/p-NiO Heterostructures Yields Outstanding Sensing Capabilities at ppb Level
title_sort nh(3) sensor based on 3d hierarchical flower-shaped n-zno/p-nio heterostructures yields outstanding sensing capabilities at ppb level
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7506851/
https://www.ncbi.nlm.nih.gov/pubmed/32842675
http://dx.doi.org/10.3390/s20174754
work_keys_str_mv AT zhaozhenting nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel
AT yanghaoyue nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel
AT weizihan nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel
AT xueyan nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel
AT sunyongjiao nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel
AT zhangwenlei nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel
AT lipengwei nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel
AT gongweiping nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel
AT zhuiykovserge nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel
AT hujie nh3sensorbasedon3dhierarchicalflowershapednznopnioheterostructuresyieldsoutstandingsensingcapabilitiesatppblevel