Cargando…

Vacuum Based Gas Sensing Material Characterization System for Precise and Simultaneous Measurement of Optical and Electrical Responses

Gas sensing performance characterization systems are essential for the research and development of gas sensing materials and devices. Although existing systems are almost completely automatically operated, the accuracies of gas concentration control and of pressure control and the ability to simulta...

Descripción completa

Detalles Bibliográficos
Autores principales: Wei, Jie, Zhao, Meng, Wang, Cong, Wang, Jun, Ye, Jian-Min, Wei, Yu-Chen, Li, Zhe-Yi, Zhao, Run, Liu, Guo-Zhen, Geng, Yan-Hong, Wang, Rui, Xiao, Hui-Dong, Li, Ying, Li, Chao-Ya, Gao, Zhi-Qiang, Gao, Ju
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839427/
https://www.ncbi.nlm.nih.gov/pubmed/35161761
http://dx.doi.org/10.3390/s22031014
_version_ 1784650366842830848
author Wei, Jie
Zhao, Meng
Wang, Cong
Wang, Jun
Ye, Jian-Min
Wei, Yu-Chen
Li, Zhe-Yi
Zhao, Run
Liu, Guo-Zhen
Geng, Yan-Hong
Wang, Rui
Xiao, Hui-Dong
Li, Ying
Li, Chao-Ya
Gao, Zhi-Qiang
Gao, Ju
author_facet Wei, Jie
Zhao, Meng
Wang, Cong
Wang, Jun
Ye, Jian-Min
Wei, Yu-Chen
Li, Zhe-Yi
Zhao, Run
Liu, Guo-Zhen
Geng, Yan-Hong
Wang, Rui
Xiao, Hui-Dong
Li, Ying
Li, Chao-Ya
Gao, Zhi-Qiang
Gao, Ju
author_sort Wei, Jie
collection PubMed
description Gas sensing performance characterization systems are essential for the research and development of gas sensing materials and devices. Although existing systems are almost completely automatically operated, the accuracies of gas concentration control and of pressure control and the ability to simultaneously detect different sensor signals still require improvement. In this study, a high-precision gas sensing material characterization system is developed based on vacuum technology, with the objective of enabling the precise and simultaneous measurement of electrical responses. Because of the implementation of vacuum technology, the gas concentration control accuracy is improved more than 1600 times, whereas the pressure of the test ambient condition can be precisely adjusted between vacuum and 1.2 bar. The vacuum-assisted gas-exchanging mechanism also enables the sensor response time to be determined more accurately. The system is capable of performing sensitivity, selectivity, and stability tests and can control the ambient relative humidity in a precise manner. More importantly, the levels of performance of three different optical signal measurement set-ups were investigated and compared in terms of detection range, linearity, noise, and response time, based on which of their scopes of application were proposed. Finally, single-period and cyclical tests were performed to examine the ability of the system to detect optical and electrical responses simultaneously, both at a single wavelength and in a spectral region.
format Online
Article
Text
id pubmed-8839427
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-88394272022-02-13 Vacuum Based Gas Sensing Material Characterization System for Precise and Simultaneous Measurement of Optical and Electrical Responses Wei, Jie Zhao, Meng Wang, Cong Wang, Jun Ye, Jian-Min Wei, Yu-Chen Li, Zhe-Yi Zhao, Run Liu, Guo-Zhen Geng, Yan-Hong Wang, Rui Xiao, Hui-Dong Li, Ying Li, Chao-Ya Gao, Zhi-Qiang Gao, Ju Sensors (Basel) Article Gas sensing performance characterization systems are essential for the research and development of gas sensing materials and devices. Although existing systems are almost completely automatically operated, the accuracies of gas concentration control and of pressure control and the ability to simultaneously detect different sensor signals still require improvement. In this study, a high-precision gas sensing material characterization system is developed based on vacuum technology, with the objective of enabling the precise and simultaneous measurement of electrical responses. Because of the implementation of vacuum technology, the gas concentration control accuracy is improved more than 1600 times, whereas the pressure of the test ambient condition can be precisely adjusted between vacuum and 1.2 bar. The vacuum-assisted gas-exchanging mechanism also enables the sensor response time to be determined more accurately. The system is capable of performing sensitivity, selectivity, and stability tests and can control the ambient relative humidity in a precise manner. More importantly, the levels of performance of three different optical signal measurement set-ups were investigated and compared in terms of detection range, linearity, noise, and response time, based on which of their scopes of application were proposed. Finally, single-period and cyclical tests were performed to examine the ability of the system to detect optical and electrical responses simultaneously, both at a single wavelength and in a spectral region. MDPI 2022-01-28 /pmc/articles/PMC8839427/ /pubmed/35161761 http://dx.doi.org/10.3390/s22031014 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
Wei, Jie
Zhao, Meng
Wang, Cong
Wang, Jun
Ye, Jian-Min
Wei, Yu-Chen
Li, Zhe-Yi
Zhao, Run
Liu, Guo-Zhen
Geng, Yan-Hong
Wang, Rui
Xiao, Hui-Dong
Li, Ying
Li, Chao-Ya
Gao, Zhi-Qiang
Gao, Ju
Vacuum Based Gas Sensing Material Characterization System for Precise and Simultaneous Measurement of Optical and Electrical Responses
title Vacuum Based Gas Sensing Material Characterization System for Precise and Simultaneous Measurement of Optical and Electrical Responses
title_full Vacuum Based Gas Sensing Material Characterization System for Precise and Simultaneous Measurement of Optical and Electrical Responses
title_fullStr Vacuum Based Gas Sensing Material Characterization System for Precise and Simultaneous Measurement of Optical and Electrical Responses
title_full_unstemmed Vacuum Based Gas Sensing Material Characterization System for Precise and Simultaneous Measurement of Optical and Electrical Responses
title_short Vacuum Based Gas Sensing Material Characterization System for Precise and Simultaneous Measurement of Optical and Electrical Responses
title_sort vacuum based gas sensing material characterization system for precise and simultaneous measurement of optical and electrical responses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839427/
https://www.ncbi.nlm.nih.gov/pubmed/35161761
http://dx.doi.org/10.3390/s22031014
work_keys_str_mv AT weijie vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT zhaomeng vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT wangcong vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT wangjun vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT yejianmin vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT weiyuchen vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT lizheyi vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT zhaorun vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT liuguozhen vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT gengyanhong vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT wangrui vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT xiaohuidong vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT liying vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT lichaoya vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT gaozhiqiang vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses
AT gaoju vacuumbasedgassensingmaterialcharacterizationsystemforpreciseandsimultaneousmeasurementofopticalandelectricalresponses