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Investigating the selective behaviour of CuO in gas sensing applications

 
: Palzer, Stefan; Wöllenstein, Jürgen; Kneer, Janosch

:

Vincenzini, P.:
7th Forum on New Materials 2016. Pt.C : CIMTEC 2016; Proceedings of the 7th Forum on New Materials, includings the 5th International Conference "Smart and Multifunctional Materials, Structures and Systems" and the 11th International Conference "Medical Applications of New Biomaterials and Nanotechnology", June 5-9, 2016, Perugia, Italy
Durnten-Zurich: TTP, 2017 (Advances in science and technology 99)
ISBN: 978-3-0357-1122-6
S.33-39
Forum on New Materials <7, 2016, Perugia>
International Conference on Smart and Multifunctional Materials, Structures and Systems (CIMTEC) <5, 2016, Perugia>
International Conference Medical Applications of New Biomaterials and Nanotechnology <11, 2016, Perugia>
Englisch
Konferenzbeitrag
Fraunhofer IPM ()
selective gas detection; Copper(II)Oxide; hydrogen sulfide; mono-nitrogen oxide; electronic nose

Abstract
This contribution revisits recent results regarding the selective detection of the trace gases hydrogen sulfide, nitrogen oxide, and nitrogen dioxide using cupric oxide (CuO). It demonstrates how the variation of the surface temperature may be used to learn about basic material parameters as well as control the surface reactions. In contrast to commonly employed modulation schemes that continuously vary the temperature we use a steady-state approach in order to extract information about gas matrices. Our results highlight the potential for incorporating laboratory results regarding surface processes in pattern recognition schemes to improve the performance of these algorithms. We propose to implement the findings into temperature modulation schemes in order to allow for adding highly gas specific elements to the algorithms deployed.

: http://publica.fraunhofer.de/dokumente/N-461394.html