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A UiO-66 3D photonic crystal optical sensor for highly efficient chlorobenzene vapor detection

Chlorobenzene (C(6)H(5)Cl) is a flammable liquid with high vapor activity, which is a severe threat to the environment and human health. Therefore, it is essential to develop a highly efficient sensor to detect C(6)H(5)Cl vapor. Herein, we developed a UiO-66 three-dimensional photonic crystal (3D PC...

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Autores principales: Wang, Yaru, Wang, Zhaolong, Gao, Yangfan, Yuan, Yi, Liu, Jianfei, Yan, Jun, Chen, Yunlin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9590246/
https://www.ncbi.nlm.nih.gov/pubmed/36337976
http://dx.doi.org/10.1039/d2ra05494a
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author Wang, Yaru
Wang, Zhaolong
Gao, Yangfan
Yuan, Yi
Liu, Jianfei
Yan, Jun
Chen, Yunlin
author_facet Wang, Yaru
Wang, Zhaolong
Gao, Yangfan
Yuan, Yi
Liu, Jianfei
Yan, Jun
Chen, Yunlin
author_sort Wang, Yaru
collection PubMed
description Chlorobenzene (C(6)H(5)Cl) is a flammable liquid with high vapor activity, which is a severe threat to the environment and human health. Therefore, it is essential to develop a highly efficient sensor to detect C(6)H(5)Cl vapor. Herein, we developed a UiO-66 three-dimensional photonic crystal (3D PC) optical sensor and investigated its sensing properties toward the C(6)H(5)Cl vapor. The UiO-66 3D PCs optical sensor shows a high sensitivity of C(6)H(5)Cl vapor, in the concentrations range of 0–500 ppm, the reflectance intensity response to be 0.06% ppm with a good linear relationship, detection limit can reach 1.64 ppm and the quality factor is 10.8. Additionally, the UiO-66 3D PC optical sensor demonstrated great selectivity with the values of selectivity (S) varying from 2.24 to 10.65 for the C(6)H(5)Cl vapor as compared with carbon tetrachloride (CCl(4)), dichloromethane (CH(2)Cl(2)), 1,1,2-trichloroethane (C(2)H(3)Cl(3)), benzene (C(6)H(6)), deionized water (H(2)O), ethanol (C(2)H(5)OH) and methyl alcohol (CH(3)OH) vapors. Moreover, the UiO-66 3D PC optical sensor shows an ultrafast optical response time and recovery times of 0.5 s and 0.45 s with exceptional stability and repeatability to 500 ppm C(6)H(5)Cl vapor. These excellent sensing properties are attributed to the efficacy of signal transduction, increased porosity and gas adsorption sites, which are intrinsically endowed by the design of the 3D optical structure. The design and fabrication of this UiO-66 3D PC optical sensor might open up potential applications for the detection of the C(6)H(5)Cl vapor.
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spelling pubmed-95902462022-11-03 A UiO-66 3D photonic crystal optical sensor for highly efficient chlorobenzene vapor detection Wang, Yaru Wang, Zhaolong Gao, Yangfan Yuan, Yi Liu, Jianfei Yan, Jun Chen, Yunlin RSC Adv Chemistry Chlorobenzene (C(6)H(5)Cl) is a flammable liquid with high vapor activity, which is a severe threat to the environment and human health. Therefore, it is essential to develop a highly efficient sensor to detect C(6)H(5)Cl vapor. Herein, we developed a UiO-66 three-dimensional photonic crystal (3D PC) optical sensor and investigated its sensing properties toward the C(6)H(5)Cl vapor. The UiO-66 3D PCs optical sensor shows a high sensitivity of C(6)H(5)Cl vapor, in the concentrations range of 0–500 ppm, the reflectance intensity response to be 0.06% ppm with a good linear relationship, detection limit can reach 1.64 ppm and the quality factor is 10.8. Additionally, the UiO-66 3D PC optical sensor demonstrated great selectivity with the values of selectivity (S) varying from 2.24 to 10.65 for the C(6)H(5)Cl vapor as compared with carbon tetrachloride (CCl(4)), dichloromethane (CH(2)Cl(2)), 1,1,2-trichloroethane (C(2)H(3)Cl(3)), benzene (C(6)H(6)), deionized water (H(2)O), ethanol (C(2)H(5)OH) and methyl alcohol (CH(3)OH) vapors. Moreover, the UiO-66 3D PC optical sensor shows an ultrafast optical response time and recovery times of 0.5 s and 0.45 s with exceptional stability and repeatability to 500 ppm C(6)H(5)Cl vapor. These excellent sensing properties are attributed to the efficacy of signal transduction, increased porosity and gas adsorption sites, which are intrinsically endowed by the design of the 3D optical structure. The design and fabrication of this UiO-66 3D PC optical sensor might open up potential applications for the detection of the C(6)H(5)Cl vapor. The Royal Society of Chemistry 2022-10-24 /pmc/articles/PMC9590246/ /pubmed/36337976 http://dx.doi.org/10.1039/d2ra05494a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Wang, Yaru
Wang, Zhaolong
Gao, Yangfan
Yuan, Yi
Liu, Jianfei
Yan, Jun
Chen, Yunlin
A UiO-66 3D photonic crystal optical sensor for highly efficient chlorobenzene vapor detection
title A UiO-66 3D photonic crystal optical sensor for highly efficient chlorobenzene vapor detection
title_full A UiO-66 3D photonic crystal optical sensor for highly efficient chlorobenzene vapor detection
title_fullStr A UiO-66 3D photonic crystal optical sensor for highly efficient chlorobenzene vapor detection
title_full_unstemmed A UiO-66 3D photonic crystal optical sensor for highly efficient chlorobenzene vapor detection
title_short A UiO-66 3D photonic crystal optical sensor for highly efficient chlorobenzene vapor detection
title_sort uio-66 3d photonic crystal optical sensor for highly efficient chlorobenzene vapor detection
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9590246/
https://www.ncbi.nlm.nih.gov/pubmed/36337976
http://dx.doi.org/10.1039/d2ra05494a
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