1991
DOI: 10.1007/bf00612423
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Reduction reaction of lanthanum-added cerium dioxide with carbon monoxide

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Cited by 22 publications
(6 citation statements)
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“…For the reaction in this work, Jander's model on solid-gas reaction can be adapted [37]. Ozawa has used this model on the CO oxidation of CeO 2 nanoparticles to calculate the reaction constant, which is represented as [38] ½1 À ð1 À xÞ 1=3 2 ¼ kt,…”
Section: Article In Pressmentioning
confidence: 99%
“…For the reaction in this work, Jander's model on solid-gas reaction can be adapted [37]. Ozawa has used this model on the CO oxidation of CeO 2 nanoparticles to calculate the reaction constant, which is represented as [38] ½1 À ð1 À xÞ 1=3 2 ¼ kt,…”
Section: Article In Pressmentioning
confidence: 99%
“…The CeO 2 -ZrO 2 solid solution with 20 mole % of Zr was developed to improve the thermal stability of CeO 2 (Ozawa et al, 1991;Ozawa et. al., 1993).…”
Section: Other Metal Oxide Supportsmentioning
confidence: 99%
“…ticle size of the core-shell particles, 25) were calculated from thermogravimetric (TG; TGD7000RH-S, ULVAC-Riko Inc.) data 25) assuming that the weight loss by heating was attributable to the combustion of the shell and that the densities of the core and the shell (dc and ds) were 7.22 g/cm 3 (ideal density of cerium oxide calculated from lattice constant: 0.541 nm) 26) and 1.66 g/cm 3 (PVP density), 27) respectively. The average density (dp) of the core-shell nanospheres was obtained using two methods.…”
Section: Jcs-japanmentioning
confidence: 99%
“…(5)). The density of the core-shell nanospheres was calculated to be 4.2 or 4.6 g/cm 3 by the former method, using a core diameter of 88 nm and a shell thickness of 13 nm or from a core diameter of 92 nm and a shell thickness of 11 nm, respectively ( Table 2).…”
Section: Densitymentioning
confidence: 99%
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