2001
DOI: 10.1149/1.1386921
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Electrochemical NO[sub x] Sensors Based on Interfacing Nanosized LaFeO[sub 3] Perovskite-Type Oxide and Ionic Conductors

Abstract: Electrochemical NO x sensors based on coupling different ionic conductors with perovskite-type LaFeO 3 as auxiliary phase were prepared. The ionic conductors used were yttria-stabilized zirconia that is an oxygen ion conductor and sodium superionic conductor whose charge carriers are sodium ions. Thick films of LaFeO 3 powders were deposited using a screen printing oil on one side of the solid electrolyte pellets, using powders having different grain sizes. The obtained sensors were wholly exposed to the same … Show more

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Cited by 90 publications
(58 citation statements)
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“…Among the metal oxides previously studied 6,9,11,12 as sensing electrode for high temperature applications, WO 3 showed the best performance. A chemical method was set up to obtain pure WO 3 sub-micrometric powders.…”
Section: Discussionmentioning
confidence: 99%
“…Among the metal oxides previously studied 6,9,11,12 as sensing electrode for high temperature applications, WO 3 showed the best performance. A chemical method was set up to obtain pure WO 3 sub-micrometric powders.…”
Section: Discussionmentioning
confidence: 99%
“…LaFeO 3 , which has been used as a semiconductor-type gas sensor [315,316], has also been used as an electrode with YSZ [255,263,317] or NASICON [317,318] electrolytes for potentiometric NO x sensors. Strontium (i.e., (La,Sr)FeO 3 [255,256,284]) or strontium and cobalt (i.e., (La, Sr)(Co,Fe)O 3 [275,280,309]) have been added to LaFeO 3 to improve electrode performance.…”
Section: Electrocatalytic Electrodesmentioning
confidence: 99%
“…Some of the authors of this paper previously examined the sensing properties of electrochemical sensors based on coupling YSZ with p-type (LaFeO 3 ), n-type semiconducting oxides (WO 3 , In 2 O 3 ) and mixed ionic-electronic conductors (La x Sr 1-x FeO 3 ) [8][9][10][11][12]. The sensors were fabricated using either pellets or thick layers of YSZ to obtain devices in bulk and planar form.…”
Section: Introductionmentioning
confidence: 99%