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  5. Selectivity of volatile organic compounds on the surface of zinc oxide nanosheets for gas sensors

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Article
English
2022

Selectivity of volatile organic compounds on the surface of zinc oxide nanosheets for gas sensors

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English
2022
Physical Chemistry Chemical Physics
Vol 24 (34)
DOI: 10.1039/d2cp02243e

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Viorel Chihaia
Viorel Chihaia

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Phan Thi Hong Hoa
Viorel Chihaia
Ong Kim Le
+4 more

Abstract

The detection of volatile organic compounds by gas sensors is of great interest for environmental quality monitoring and the early-stage and noninvasive diagnosis of diseases. Experiments found hexane, toluene, aniline, butanone, acetone, and propanol gases in the exhaled breath of patients suffering from COVID-19, lung cancer, and diabetes. However, no studies are available to systematically elucidate the selectivity of these gases on nanosheets of zinc oxide for chemiresistive and direct thermoelectric gas sensors. Therefore, this work performed the elucidation by studying the electronic, electrical, and thermal properties of the bilayered ZnO nanosheets with polar (0001) and non-polar (112̄0) surfaces under the adsorption of the gases. The interaction between the gases and the nanosheets belongs to two groups: electrostatic attraction and charge exchange. The second one occurs due to the peak resonance of the same type of orbitals between the substrates and the gases along the surface normal and the first one for the other cases. The characteristics of the Seebeck coefficient exhibited distinct selectivity of butanone and acetone.

How to cite this publication

Phan Thi Hong Hoa, Viorel Chihaia, Ong Kim Le, Thanh Hai Pham, Đặng Long Quân, Huynh Tat Thanh, Do Ngoc Son (2022). Selectivity of volatile organic compounds on the surface of zinc oxide nanosheets for gas sensors. Physical Chemistry Chemical Physics, 24(34), pp. 20491-20505, DOI: 10.1039/d2cp02243e.

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Publication Details

Type

Article

Year

2022

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Physical Chemistry Chemical Physics

DOI

10.1039/d2cp02243e

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