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Enhanced Response for Foodborne Pathogens Detection by Au Nanoparticles Decorated ZnO Nanosheets Gas Sensor

Listeria monocytogenes is a hazardous foodborne pathogen that is able to cause acute meningitis, encephalitis, and sepsis to humans. The efficient detection of 3-hydroxy-2-butanone, which has been verified as a biomarker for the exhalation of Listeria monocytogenes, can feasibly evaluate whether the...

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Autores principales: Zhao, Cheng, Xu, Shanshan, Wei, Jing, Xie, Siqi, Wei, Jinlei, Han, Jingting, Zhang, Zhaohuan, Liu, Haiquan, Cheng, Jinsheng, Zhao, Yong, Zhu, Yongheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599186/
https://www.ncbi.nlm.nih.gov/pubmed/36290940
http://dx.doi.org/10.3390/bios12100803
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author Zhao, Cheng
Xu, Shanshan
Wei, Jing
Xie, Siqi
Wei, Jinlei
Han, Jingting
Zhang, Zhaohuan
Liu, Haiquan
Cheng, Jinsheng
Zhao, Yong
Zhu, Yongheng
author_facet Zhao, Cheng
Xu, Shanshan
Wei, Jing
Xie, Siqi
Wei, Jinlei
Han, Jingting
Zhang, Zhaohuan
Liu, Haiquan
Cheng, Jinsheng
Zhao, Yong
Zhu, Yongheng
author_sort Zhao, Cheng
collection PubMed
description Listeria monocytogenes is a hazardous foodborne pathogen that is able to cause acute meningitis, encephalitis, and sepsis to humans. The efficient detection of 3-hydroxy-2-butanone, which has been verified as a biomarker for the exhalation of Listeria monocytogenes, can feasibly evaluate whether the bacteria are contained in food. Herein, we developed an outstanding 3-hydroxy-2-butanone gas sensor based on the microelectromechanical systems using Au/ZnO NS as a sensing material. In this work, ZnO nanosheets were synthesized by a hydrothermal reaction, and Au nanoparticles (~5.5 nm) were prepared via an oleylamine reduction method. Then, an ultrasonic treatment was carried out to modified Au nanoparticles onto ZnO nanosheets. The XRD, BET, TEM, and XPS were used to characterize their morphology, microstructure, catalytic structure, specific surface area, and chemical composition. The response of the 1.0% Au/ZnO NS sensors vs. 25 ppm 3-hydroxy-2-butanone was up to 174.04 at 230 °C. Moreover, these sensors presented fast response/recovery time (6 s/7 s), great selectivity, and an outstanding limit of detection (lower than 0.5 ppm). This work is full of promise for developing a nondestructive, rapid and practical sensor, which would improve Listeria monocytogenes evaluation in foods.
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spelling pubmed-95991862022-10-27 Enhanced Response for Foodborne Pathogens Detection by Au Nanoparticles Decorated ZnO Nanosheets Gas Sensor Zhao, Cheng Xu, Shanshan Wei, Jing Xie, Siqi Wei, Jinlei Han, Jingting Zhang, Zhaohuan Liu, Haiquan Cheng, Jinsheng Zhao, Yong Zhu, Yongheng Biosensors (Basel) Article Listeria monocytogenes is a hazardous foodborne pathogen that is able to cause acute meningitis, encephalitis, and sepsis to humans. The efficient detection of 3-hydroxy-2-butanone, which has been verified as a biomarker for the exhalation of Listeria monocytogenes, can feasibly evaluate whether the bacteria are contained in food. Herein, we developed an outstanding 3-hydroxy-2-butanone gas sensor based on the microelectromechanical systems using Au/ZnO NS as a sensing material. In this work, ZnO nanosheets were synthesized by a hydrothermal reaction, and Au nanoparticles (~5.5 nm) were prepared via an oleylamine reduction method. Then, an ultrasonic treatment was carried out to modified Au nanoparticles onto ZnO nanosheets. The XRD, BET, TEM, and XPS were used to characterize their morphology, microstructure, catalytic structure, specific surface area, and chemical composition. The response of the 1.0% Au/ZnO NS sensors vs. 25 ppm 3-hydroxy-2-butanone was up to 174.04 at 230 °C. Moreover, these sensors presented fast response/recovery time (6 s/7 s), great selectivity, and an outstanding limit of detection (lower than 0.5 ppm). This work is full of promise for developing a nondestructive, rapid and practical sensor, which would improve Listeria monocytogenes evaluation in foods. MDPI 2022-09-28 /pmc/articles/PMC9599186/ /pubmed/36290940 http://dx.doi.org/10.3390/bios12100803 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhao, Cheng
Xu, Shanshan
Wei, Jing
Xie, Siqi
Wei, Jinlei
Han, Jingting
Zhang, Zhaohuan
Liu, Haiquan
Cheng, Jinsheng
Zhao, Yong
Zhu, Yongheng
Enhanced Response for Foodborne Pathogens Detection by Au Nanoparticles Decorated ZnO Nanosheets Gas Sensor
title Enhanced Response for Foodborne Pathogens Detection by Au Nanoparticles Decorated ZnO Nanosheets Gas Sensor
title_full Enhanced Response for Foodborne Pathogens Detection by Au Nanoparticles Decorated ZnO Nanosheets Gas Sensor
title_fullStr Enhanced Response for Foodborne Pathogens Detection by Au Nanoparticles Decorated ZnO Nanosheets Gas Sensor
title_full_unstemmed Enhanced Response for Foodborne Pathogens Detection by Au Nanoparticles Decorated ZnO Nanosheets Gas Sensor
title_short Enhanced Response for Foodborne Pathogens Detection by Au Nanoparticles Decorated ZnO Nanosheets Gas Sensor
title_sort enhanced response for foodborne pathogens detection by au nanoparticles decorated zno nanosheets gas sensor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599186/
https://www.ncbi.nlm.nih.gov/pubmed/36290940
http://dx.doi.org/10.3390/bios12100803
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