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A Potassium Ion-Exchanged Glass Optical Waveguide Sensor Locally Coated with a Crystal Violet-SiO(2) Gel Film for Real-Time Detection of Organophosphorus Pesticides Simulant
An optical waveguide (OWG) sensor was developed for real-time detection of diethyl chlorophosphate (DCP) vapor, which is a typical simulant for organophosphorus pesticides and chemical weapon agents. Silica gel, crystal violet (CV), and potassium ion-exchange (PIE) OWG were used to fabricate the sen...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806192/ https://www.ncbi.nlm.nih.gov/pubmed/31569346 http://dx.doi.org/10.3390/s19194219 |
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author | Du, Bin Tong, Zhaoyang Mu, Xihui Xu, Jianjie Liu, Shuai Liu, Zhiwei Cao, Wei Qi, Zhi-Mei |
author_facet | Du, Bin Tong, Zhaoyang Mu, Xihui Xu, Jianjie Liu, Shuai Liu, Zhiwei Cao, Wei Qi, Zhi-Mei |
author_sort | Du, Bin |
collection | PubMed |
description | An optical waveguide (OWG) sensor was developed for real-time detection of diethyl chlorophosphate (DCP) vapor, which is a typical simulant for organophosphorus pesticides and chemical weapon agents. Silica gel, crystal violet (CV), and potassium ion-exchange (PIE) OWG were used to fabricate the sensor’s device. In the real-time detection of the DCP vapor, the volume fraction of DCP vapor was recorded to be as low as 1.68 × 10(−9). Moreover, the detection mechanism of CV-SiO(2) gel film coated the PIE OWG sensor for DCP, which was evaluated by absorption spectra. These results demonstrated that the change of output light intensity of the OWG sensor significantly increased with the augment of the DCP concentration. Repeatability as well as selectivity of the sensors were tested using 0.042 × 10(−6) and 26.32 × 10(−6) volume fraction of the DCP vapor. No clear interference with the DCP detection was observed in the presence of other common solvents (e.g., acetone, methanol, dichloromethane, dimethylsulfoxide, and tetrahydrofuran), benzene series (e.g., benzene, toluene, chlorobenzene, and aniline), phosphorus-containing reagents (e.g., dimethyl methylphosphonate and trimethyl phosphate), acid, and basic gas (e.g., acetic acid and 25% ammonium hydroxide), which demonstrates that the OWG sensor could provide real-time, fast, and accurate measurement results for the detection of DCP. |
format | Online Article Text |
id | pubmed-6806192 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-68061922019-11-07 A Potassium Ion-Exchanged Glass Optical Waveguide Sensor Locally Coated with a Crystal Violet-SiO(2) Gel Film for Real-Time Detection of Organophosphorus Pesticides Simulant Du, Bin Tong, Zhaoyang Mu, Xihui Xu, Jianjie Liu, Shuai Liu, Zhiwei Cao, Wei Qi, Zhi-Mei Sensors (Basel) Article An optical waveguide (OWG) sensor was developed for real-time detection of diethyl chlorophosphate (DCP) vapor, which is a typical simulant for organophosphorus pesticides and chemical weapon agents. Silica gel, crystal violet (CV), and potassium ion-exchange (PIE) OWG were used to fabricate the sensor’s device. In the real-time detection of the DCP vapor, the volume fraction of DCP vapor was recorded to be as low as 1.68 × 10(−9). Moreover, the detection mechanism of CV-SiO(2) gel film coated the PIE OWG sensor for DCP, which was evaluated by absorption spectra. These results demonstrated that the change of output light intensity of the OWG sensor significantly increased with the augment of the DCP concentration. Repeatability as well as selectivity of the sensors were tested using 0.042 × 10(−6) and 26.32 × 10(−6) volume fraction of the DCP vapor. No clear interference with the DCP detection was observed in the presence of other common solvents (e.g., acetone, methanol, dichloromethane, dimethylsulfoxide, and tetrahydrofuran), benzene series (e.g., benzene, toluene, chlorobenzene, and aniline), phosphorus-containing reagents (e.g., dimethyl methylphosphonate and trimethyl phosphate), acid, and basic gas (e.g., acetic acid and 25% ammonium hydroxide), which demonstrates that the OWG sensor could provide real-time, fast, and accurate measurement results for the detection of DCP. MDPI 2019-09-28 /pmc/articles/PMC6806192/ /pubmed/31569346 http://dx.doi.org/10.3390/s19194219 Text en © 2019 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 Du, Bin Tong, Zhaoyang Mu, Xihui Xu, Jianjie Liu, Shuai Liu, Zhiwei Cao, Wei Qi, Zhi-Mei A Potassium Ion-Exchanged Glass Optical Waveguide Sensor Locally Coated with a Crystal Violet-SiO(2) Gel Film for Real-Time Detection of Organophosphorus Pesticides Simulant |
title | A Potassium Ion-Exchanged Glass Optical Waveguide Sensor Locally Coated with a Crystal Violet-SiO(2) Gel Film for Real-Time Detection of Organophosphorus Pesticides Simulant |
title_full | A Potassium Ion-Exchanged Glass Optical Waveguide Sensor Locally Coated with a Crystal Violet-SiO(2) Gel Film for Real-Time Detection of Organophosphorus Pesticides Simulant |
title_fullStr | A Potassium Ion-Exchanged Glass Optical Waveguide Sensor Locally Coated with a Crystal Violet-SiO(2) Gel Film for Real-Time Detection of Organophosphorus Pesticides Simulant |
title_full_unstemmed | A Potassium Ion-Exchanged Glass Optical Waveguide Sensor Locally Coated with a Crystal Violet-SiO(2) Gel Film for Real-Time Detection of Organophosphorus Pesticides Simulant |
title_short | A Potassium Ion-Exchanged Glass Optical Waveguide Sensor Locally Coated with a Crystal Violet-SiO(2) Gel Film for Real-Time Detection of Organophosphorus Pesticides Simulant |
title_sort | potassium ion-exchanged glass optical waveguide sensor locally coated with a crystal violet-sio(2) gel film for real-time detection of organophosphorus pesticides simulant |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6806192/ https://www.ncbi.nlm.nih.gov/pubmed/31569346 http://dx.doi.org/10.3390/s19194219 |
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