Fast and All-Optical Hydrogen Sensor Based on Gold-Coated Optical Fiber Functionalized with Metal-Organic Framework Layer.


Journal

ACS sensors
ISSN: 2379-3694
Titre abrégé: ACS Sens
Pays: United States
ID NLM: 101669031

Informations de publication

Date de publication:
27 12 2019
Historique:
pubmed: 4 12 2019
medline: 7 8 2020
entrez: 4 12 2019
Statut: ppublish

Résumé

Remote detection of hydrogen, without the utilization of electronic component or elevated temperature, is one of the hot topics in the hydrogen technology and safety. In this work, the design and realization of the optical fiber-based hydrogen sensor with unique characteristics are proposed. The proposed sensor is based on the gold-coated multimode fiber, providing the plasmon properties, decorated by the IRMOF-20 layer with high selectivity and affinity toward hydrogen. The IRMOF-20 layer was grown by a surface-assisted technique, and its formation and properties were studied using X-ray photoelectron spectroscopy, Raman, X-ray diffraction, and Brunauer-Emmett-Teller techniques. Simultaneous ellipsometry results indicate the apparent changes of the refractive index of the IRMOF-20 layer due to hydrogen sorption. As results, the presence of hydrogen led to the pronounced changes of plasmon band wavelength position as well as its intensity increase. The proposed hydrogen sensors were favorably distinguished by a high response/recovery rate, excellent selectivity toward the hydrogen, very low temperature dependency, functionality at room or lower temperature, insensitivity toward the humidity, and the presence of CO

Identifiants

pubmed: 31793768
doi: 10.1021/acssensors.9b01074
doi:

Substances chimiques

Metal-Organic Frameworks 0
Gold 7440-57-5
Hydrogen 7YNJ3PO35Z

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

3133-3140

Auteurs

Elena Miliutina (E)

Department of Solid State Engineering , University of Chemistry and Technology , 16628 Prague , Czech Republic.
Research School of Chemistry and Applied Biomedical Sciences , Tomsk Polytechnic University , 634050 Tomsk , Russian Federation.

Olga Guselnikova (O)

Department of Solid State Engineering , University of Chemistry and Technology , 16628 Prague , Czech Republic.
Research School of Chemistry and Applied Biomedical Sciences , Tomsk Polytechnic University , 634050 Tomsk , Russian Federation.

Sofiia Chufistova (S)

Department of Solid State Engineering , University of Chemistry and Technology , 16628 Prague , Czech Republic.

Zdenka Kolska (Z)

Materials Centre, Faculty of Science , J. E Purkyně University , 400 96 Ústí nad Labem , Czech Republic.

Roman Elashnikov (R)

Department of Solid State Engineering , University of Chemistry and Technology , 16628 Prague , Czech Republic.

Vasilii Burtsev (V)

Department of Solid State Engineering , University of Chemistry and Technology , 16628 Prague , Czech Republic.

Pavel Postnikov (P)

Department of Solid State Engineering , University of Chemistry and Technology , 16628 Prague , Czech Republic.
Research School of Chemistry and Applied Biomedical Sciences , Tomsk Polytechnic University , 634050 Tomsk , Russian Federation.

Vaclav Svorcik (V)

Department of Solid State Engineering , University of Chemistry and Technology , 16628 Prague , Czech Republic.

Oleksiy Lyutakov (O)

Department of Solid State Engineering , University of Chemistry and Technology , 16628 Prague , Czech Republic.
Research School of Chemistry and Applied Biomedical Sciences , Tomsk Polytechnic University , 634050 Tomsk , Russian Federation.

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Classifications MeSH