Electronic nose for toxic gas detection based on photostimulated core-shell nanowires
A novel fabrication of microelectronic nose based on ZnO nanowires and ZnO surface modifications including ZnO-ZnAl2O4 core-shell nanowires and ZnO-Zn2TiO4 core-shell nanowires gas-sensing elements operated at room temperature is reported. By combining vapor-phase transport processes and atomic laye...
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th-mahidol.336052018-11-09T09:08:50Z Electronic nose for toxic gas detection based on photostimulated core-shell nanowires Chatchawal Wongchoosuk Kittitat Subannajui Chunyu Wang Yang Yang Firat Güder Teerakiat Kerdcharoen Volker Cimalla Margit Zacharias Kasetsart University Universitat Freiburg im Breisgau Mahidol University Fraunhofer Institute for Applied Solid State Physics IAF Nanjing Tech University Harvard University Chemical Engineering Chemistry A novel fabrication of microelectronic nose based on ZnO nanowires and ZnO surface modifications including ZnO-ZnAl2O4 core-shell nanowires and ZnO-Zn2TiO4 core-shell nanowires gas-sensing elements operated at room temperature is reported. By combining vapor-phase transport processes and atomic layer deposition techniques, highly homogeneous core-shell nanowires structures can be successfully obtained on large scale areas. Under ultraviolet illumination of the specific oxide surfaces, photo-stimulated oxygen species (O2-(ads)) respond to and dominate the gas sensing mechanism of the core-shell nanowires at room temperature. Principal component analysis results show the perfect discrimination of gases including toxic gases and non-toxic gases. This novel device can be used to identify both gas types with concentrations in the ppb level at room temperature. © 2014 the Partner Organisations. 2018-11-09T02:04:38Z 2018-11-09T02:04:38Z 2014-01-01 Article RSC Advances. Vol.4, No.66 (2014), 35084-35088 10.1039/c4ra06143h 20462069 2-s2.0-84906536022 https://repository.li.mahidol.ac.th/handle/123456789/33605 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84906536022&origin=inward |
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Chemical Engineering Chemistry Chatchawal Wongchoosuk Kittitat Subannajui Chunyu Wang Yang Yang Firat Güder Teerakiat Kerdcharoen Volker Cimalla Margit Zacharias Electronic nose for toxic gas detection based on photostimulated core-shell nanowires |
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A novel fabrication of microelectronic nose based on ZnO nanowires and ZnO surface modifications including ZnO-ZnAl2O4 core-shell nanowires and ZnO-Zn2TiO4 core-shell nanowires gas-sensing elements operated at room temperature is reported. By combining vapor-phase transport processes and atomic layer deposition techniques, highly homogeneous core-shell nanowires structures can be successfully obtained on large scale areas. Under ultraviolet illumination of the specific oxide surfaces, photo-stimulated oxygen species (O2-(ads)) respond to and dominate the gas sensing mechanism of the core-shell nanowires at room temperature. Principal component analysis results show the perfect discrimination of gases including toxic gases and non-toxic gases. This novel device can be used to identify both gas types with concentrations in the ppb level at room temperature. © 2014 the Partner Organisations. |
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Kasetsart University |
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Kasetsart University Chatchawal Wongchoosuk Kittitat Subannajui Chunyu Wang Yang Yang Firat Güder Teerakiat Kerdcharoen Volker Cimalla Margit Zacharias |
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Article |
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Chatchawal Wongchoosuk Kittitat Subannajui Chunyu Wang Yang Yang Firat Güder Teerakiat Kerdcharoen Volker Cimalla Margit Zacharias |
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Chatchawal Wongchoosuk |
title |
Electronic nose for toxic gas detection based on photostimulated core-shell nanowires |
title_short |
Electronic nose for toxic gas detection based on photostimulated core-shell nanowires |
title_full |
Electronic nose for toxic gas detection based on photostimulated core-shell nanowires |
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Electronic nose for toxic gas detection based on photostimulated core-shell nanowires |
title_full_unstemmed |
Electronic nose for toxic gas detection based on photostimulated core-shell nanowires |
title_sort |
electronic nose for toxic gas detection based on photostimulated core-shell nanowires |
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2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/33605 |
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