Open Access
Open access
Nanomaterials, volume 9, issue 5, pages 728

Effect of AuPd Bimetal Sensitization on Gas Sensing Performance of Nanocrystalline SnO2 Obtained by Single Step Flame Spray Pyrolysis

Konstantin Zamanskiy 2
Artemiy Beltyukov 3
Andrey Asachenko 1, 4
Maxim A Topchiy 1, 4
Mikhail Nechaev 1, 4
Alexey Garshev 1
Darya Filatova 1
Alexander Gaskov 1
Show full list: 12 authors
Publication typeJournal Article
Publication date2019-05-10
Journal: Nanomaterials
scimago Q1
SJR0.798
CiteScore8.5
Impact factor4.4
ISSN20794991
PubMed ID:  31083465
General Chemical Engineering
General Materials Science
Abstract

Improvement of sensitivity, lower detection limits, stability and reproducibility of semiconductor metal oxide gas sensor characteristics are required for their application in the fields of ecological monitoring, industrial safety, public security, express medical diagnostics, etc. Facile and scalable single step flame spray pyrolysis (FSP) synthesis of bimetal AuPd sensitized nanocrystalline SnO2 is reported. The materials chemical composition, structure and morphology has been studied by XRD, XPS, HAADFSTEM, BET, ICP-MS techniques. Thermo-programmed reduction with hydrogen (TPR-H2) has been used for materials chemical reactivity characterization. Superior gas sensor response of bimetallic modified SnO2 towards wide concentration range of reducing (CO, CH4, C3H8, H2S, NH3) and oxidizing (NO2) gases compared to pure and monometallic modified SnO2 is reported for dry and humid gas detection conditions. The combination of facilitated oxygen molecule spillover on gold particles and electronic effect of Fermi level control by reoxidizing Pd-PdO clusters on SnO2 surface is proposed to give rise to the observed enhanced gas sensor performance.

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